Tag Archives: aluminum alloy

Fig. 1. Design comparison with steel armrest and magnesium armrest design.

Development of a bus armrest fabrication process with a high-vacuum, high-pressure die-casting process using the AM60 alloy

This article introduces the paper “Development of a bus armrest fabrication process with a high-vacuum, high-pressure die-casting process using the AM60 alloy”. 1. Overview: 2. Research Background: 3. Research Purpose and Research Questions: 4. Research Methodology: 5. Main Research Results: 6. Conclusion and Discussion: 7. Future Follow-up Research: 8. References: 9. Copyright: This material was

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Fig. 1. 2017 Chrysler Pacifica showing the liftgate assembly highlighted by a magnesium die-cast inner [4] (Copyright 2018 by FCA. Used with permission. Chrysler is a registered trademark of FCA US LLC).

Exploring the Concept of Castability in Magnesium Die-Casting Alloys

This article introduces the paper”Exploring the concept of castability in magnesium die-casting alloys” published in the Journal of Magnesium and Alloys in 2021. The paper, authored by J.P. Weiler, delves into the multifaceted concept of castability within the magnesium die-casting industry, a critical aspect for developing advanced alloys and optimizing manufacturing processes. This summary is

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Fig. 2 Subframe shape (top view)

Front Aluminum Subframe of High Level Vacuum Die-casting

This article introduces the paper “Front Aluminum Subframe of High Level Vacuum Die-casting,” published in Transactions of KSAE, Vol. 20, No. 4, pp.52-59 (2012). This paper details the development of an aluminum subframe using high level vacuum die casting to reduce weight and enhance performance compared to traditional steel subframes. 1. Overview: 2. Research Background:

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Figure 8 Appearance of fastened AE44 plates pretreated with fluorozirconate and a metallic-looking epoxy-based powder coat.

Corrosion Protection of Joining Areas in Magnesium Die-Cast and Sheet Products

This article introduces the paper “Corrosion Protection of Joining Areas in Magnesium Die-Cast and Sheet Products.” 1. Overview: 2. Research Background: 3. Research Purpose and Research Questions: 4. Research Methodology 5. Main Research Results: 6. Conclusion and Discussion: 7. Future Follow-up Research: 8. References: 9. Copyright: This material is Wenyue Zheng, C. Derushie, J. Lo

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Fig1. a) Fatturato relativo al mercato italiano ed estero nei diversi settori di applicazione dei prodotto pressocolati in lega di alluminio. b) Ripartizione dell’Impiego di lega di alluminio nelle 5 famiglie di getti pressocolati [6].

PROPOSAL OF A CLASSIFICATION OF DEFECTS OF HIGH-PRESSURE DIECAST PRODUCTS

This article introduces the paper “PROPOSAL OF A CLASSIFICATION OF DEFECTS OF HIGH-PRESSURE DIECAST PRODUCTS”. 1. Overview: 2. Research Background: 3. Research Purpose and Research Questions: 4. Research Methodology 5. Main Research Results: The analysis of rejection causes (Fig. 3) reinforces the importance of addressing metallurgical defects, particularly gas porosity, shrinkage porosity, and cold laps,

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Fig. 1. ASF 구조의 예

Die Casting Technology for Welding Application: A Detailed Summary

This article introduces the paper “[Original Paper Title]” focusing on die casting technology for welding applications, originally published in the Journal of the Korea Foundry Society. 1. Overview: 2. Research Background: 3. Research Purpose and Research Questions: 4. Research Methodology: The study also compared the weld bead quality of components produced using the HIVAC-V method

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Figure 2. Illustration of boundary conditions for the finite element model; (a) conventional die casting die, (b) lightweight design die; see Table 1 for notes on 1–8.

AN INITIAL STUDY OF A LIGHTWEIGHT DIE CASTING DIE USING A MODULAR DESIGN APPROACH

This article introduces the paper “An Initial Study of a Lightweight Die Casting Die Using a Modular Design Approach,” published in the International Journal of Metalcasting in 2018. 1. Overview: 2. Research Background: 3. Research Purpose and Research Questions: 4. Research Methodology: 5. Main Research Results: 6. Conclusion and Discussion: 7. Future Follow-up Research: 8.

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Figure 14: Biscuity, runner, gating, and venting system on casting (photo permission from Mercury Marine)

SYSTEM UNDERSTANDING OF HIGH PRESSURE DIE CASTING PROCESS AND DATA WITH MACHINE LEARNING APPLICATIONS

This article introduces the paper “SYSTEM UNDERSTANDING OF HIGH PRESSURE DIE CASTING PROCESS AND DATA WITH MACHINE LEARNING APPLICATIONS”. Overview: Research Background: Research Purpose and Research Questions: Research Methodology Main Research Results: Conclusion and Discussion: Future Follow-up Research: References: List of Abbreviations Copyright:

Fig. 3 Boundary conditions for FEA

Strength Analysis of Aluminum Alloy Window Wiper Manufactured by Die Casting

This article introduces the paper “Strength Analysis of Aluminum Alloy Window Wiper Manufactured by Die Casting,” published in the Journal of the Korean Society of Manufacturing Technology Engineers in 2016. This study investigates the feasibility of using aluminum alloy and die casting to produce lightweight and high-strength window wipers for automobiles, addressing the growing need

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Figure 2.3: Die distortion process in a die casting cycle

STUDY OF THE EFFECT OF STRUCTURAL DIE AND MACHINE VARIABLES ON DIE DEFLECTIONS

This article introduces the paper “STUDY OF THE EFFECT OF STRUCTURAL DIE AND MACHINE VARIABLES ON DIE DEFLECTIONS”. Overview: Research Background: Research Purpose and Research Questions: Research Methodology Main Research Results: Conclusion and Discussion: Future Follow-up Research: References: Copyright: This material is Jeeth Xavier Kinatingal’s paper: Based on STUDY OF THE EFFECT OF STRUCTURAL DIE

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