Tag Archives: aluminum alloy

Fig. 1. Schematic of Continuous Rod Casting Machine

4 Key Levers for Casting Process Optimization: Lessons for HPDC from a Copper Alloy Study

This technical summary is based on the academic paper “Effect of water flow rate, casting speed, alloying elements and pull distance on tensile strength, elongation percentage and microstructure of continuous cast copper alloys” published by Bagherian, E-R., Fan, Y., Cooper, M., Frame, B., & Abdolvand, A. in Metallurgical Research and Technology (2016). It was analyzed

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Figure 3: Residual Plots for Yield Strength of a FSW Joint in ANOVA

Maximizing Friction Stir Welding (FSW) Strength: A Statistical Optimization for Joining Dissimilar Aluminum Alloys

This technical brief is based on the academic paper “A STATISTICAL ANALYSIS OF JOINT STRENGTH OF DISSIMILAR ALUMINIUM ALLOYS FORMED BY FRICTION STIR WELDING USING TAGUCHI DESIGN APPROACH, ANOVA FOR THE OPTIMIZATION OF PROCESS PARAMETERS” by Mohammed Yunus & Mohammad S. Alsoufi, published in [IMPACT: International Journal of Research in Engineering & Technology (IMPACT: IJRET)]

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A REVIEW STUDY IN ENHANCING THE OPTIMISATION PROCESS FOR AA6351 ALLOY USING FSW TECHNIQUES - LITERATURE SURVEY

A REVIEW STUDY IN ENHANCING THE OPTIMISATION PROCESS FOR AA6351 ALLOY USING FSW TECHNIQUES – LITERATURE SURVEY

This introduction paper is based on the paper “A REVIEW STUDY IN ENHANCING THE OPTIMISATION PROCESS FOR AA6351 ALLOY USING FSW TECHNIQUES – LITERATURE SURVEY” published by “MATERIAL SCIENCE AND TECHNOLOGY”. 1. Overview: 2. Abstract: Friction stir welding is the solid type welding which uses best tool that is used to join two workpieces without

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Fig.1.Die casting hot chamber machine

Elimination of Wastes In Die Casting Industry By Lean Manufacturing

A Phased, Data-Driven Approach to Eliminating the 5 Major Wastes in Die Casting Operations This technical brief is based on the academic paper “Elimination of Wastes In Die Casting Industry By Lean Manufacturing: A Case Study” by Sumit Kumar Singh, Deepak Kumar, and Tarun Gupta, published in the IOSR Journal of Engineering (IOSRJEN) (2014). It

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Fig. 3. Examples of dense ceramic components of manufacturing equipment for semiconductor devices and liquid crystal display panels.

Automotive and industrial applications of structural ceramics in Japan

A Review of Japan’s Evolving Ceramics Market: From High-Stress Engine Parts to High-Purity Electronics This technical brief is based on the academic paper “Automotive and industrial applications of structural ceramics in Japan” by Akira Okada, published in the Journal of the European Ceramic Society (2008). It is summarized and analyzed for industry professionals by the

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Figure 6. (a) Hydroformed aluminum rail for Corvette Z06 shown immediately after forming (Luo & Sachdev, 2008). (b) AZ31 magnesium tube gas-formed at 350°C showing 80% circumference expansion (Luo & Sachdev, 2008)

Recent advances in light metals and manufacturing for automotive applications

How Computational Tools and Advanced Manufacturing are Driving the Next Generation of Lighter, More Efficient Vehicles This technical brief is based on the academic paper “Recent advances in light metals and manufacturing for automotive applications” by A. A. Luo, published in CIM Journal (2021). It is summarized and analyzed for industry professionals by the experts

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Unlocking 31% Higher Hardness in Aluminum Composites: A Data-Driven Guide to Process Optimization

This technical summary is based on the academic paper “Stir Casting Process Analysis and Optimization for Better Properties in Al-MWCNT-GR-Based Hybrid Composites” published by Kanchiraya Shivalingaiah, Vinayaka Nagarajaiah, et al. in Metals (2022). It was analyzed and summarized for casting experts by CASTMAN experts with the help of LLM AI such as Gemini, ChatGPT, and

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Figure 1. Schematic diagram of a typical HPDC process.

Development_of_High_Performance_Copper_Alloy_Chill_Vent_for_High_Pressure_Die_Casting

Boost Cooling Efficiency by 158%: The Power of Copper Alloy Chill Vents in HPDC This technical summary is based on the academic paper “Development of High Performance Copper Alloy Chill Vent for High Pressure Die Casting” published by Duoc T Phan, Syed H Masood, Syed H Riza, and Harsh Modi in International Journal of Mechanical

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Figure 1.1: Gravity die mold [3].

Vertical vs. Horizontal Die Casting: Which Arrangement Maximizes Mechanical Properties?

This technical summary is based on the academic paper “ANALYSIS OF MECHANICAL PROPERTIES AND MICROSTRUCTURE OF MULTIPLE DIE CAVITY PRODUCTS PRODUCED IN VERTICAL AND HORIZONTAL ARRANGEMENT BY GRAVITY DIE CASTING” published by SALEH S SALEH ELFALLAH in Faculty of Mechanical and Manufacturing Engineering Universiti Tun Hussein Onn Malaysia (2012). It was analyzed and summarized for

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Figure 1. Basic rapid investment casting process flowchart

Rapid Investment Casting of Nano-treated Aluminum Alloy 2024

Overcoming the ‘Impossible’: How Nanoparticles Unlock High-Strength Aluminum for Investment Casting This technical brief is based on the academic paper “Rapid Investment Casting of Nano-treated Aluminum Alloy 2024” by Yitian Chi, Narayanan Murali, and Xiaochun Li. This is a preprint research paper and has not been peer reviewed. It is summarized and analyzed for manufacturing

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