Tag Archives: Heat Sink

Fig. 1. Gating system nomenclature [22].

Feature Library of Gating System for a Die-Casting Die

This introductory paper is the research content of the paper “Feature Library of Gating System for a Die-Casting Die” published by International Journal on Emerging Technologies. 1. Overview: 2. Abstracts / Introduction Gating system design is a time-consuming process for die-casting experts, requiring significant manual input and iterative design finalization. This process necessitates deep knowledge

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Figure 1: Swaging process

Characterization of Mixed Metals Swaged Heat Sinks for Concentrated Heat Source

This introductory paper is the research content of the paper “Characterization of Mixed Metals Swaged Heat Sinks for Concentrated Heat Source” published by InterPACK’03®. 1. Overview: 2. Abstracts / Introduction AbstractExperimental study investigating thermal performance of four heatsink combinations: all Aluminum, all Copper, Copper baseplate/Aluminum fin, and Aluminum baseplate/Copper fin. Tests in a vertical wind

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Fig. 10. Diecast car audio heat sink component with various alloy compositions; (a) Al-1.0 wt%Cu-0.6 wt%Fe-1.5 wt%Si), (b) Al1.0 wt%Cu-0.6 wt%Fe-2.0 wt%Si, (c) Al-2.5 wt%Cu-0.8 wt%Fe11 wt%Si-0.2 wt%Mg-0.3 wt%Mn (ALDC12).

Effect of Alloying Elements on the Thermal Conductivity and Casting Characteristics of Aluminum Alloys in High Pressure Die Casting

This introductory paper is the research content of the paper [“Effect of Alloying Elements on the Thermal Conductivity and Casting Characteristics of Aluminum Alloys in High Pressure Die Casting”] published by [‘Korean Institute of Metals and Materials’, ‘Chonbuk National University’]. 1. Overview: 2. Abstracts / Introduction Abstract: High pressure die casting is one of the

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Fig. 1. Stages of Heat Sinks design, simulation and manufacturing.

ECO-DESIGN OF HEAT SINKS BASED ON CAD/CAE TECHNIQUES

This introductory paper is the research content of the paper [“ECO-DESIGN OF HEAT SINKS BASED ON CAD/CAE TECHNIQUES”] published by [Proceedings in Manufacturing Systems]. 1. Overview: 2. Abstracts / Introduction In the era of Industry 4.0, the performance of manufacturing systems is intrinsically linked to the efficacy of embedded electronics. These components are crucial for

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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

This introductory paper is the research content of the paper [“Development of High Performance Copper Alloy Chill Vent for High Pressure Die Casting”] published by [‘International Journal of Mechanical Engineering and Robotics Research’]. 1. Overview: 2. Abstracts / Introduction In High Pressure Die Casting (HPDC), chill vents are crucial for removing residual air and gases

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Figure 9: Aluminum extruded 2D heat sinks (top left), aluminum machined heat sink (top right), zinc cast heat sinks (bottom left) [8], and new generation zinc cast heat sink (bottom right).

Development of a New High Fluidity Zinc Die Casting Alloy

This introductory paper is the research content of the paper [“Development of a New High Fluidity Zinc Die Casting Alloy”] published by [Conference Paper September 2010]. 1. Overview: 2. Abstracts / Introduction ABSTRACT A new hot chamber zinc die casting alloy containing 4.5%AI, 0.01%Mg and 0.03%Cu was developed at Teck’s Product Technology Centre (PTC) in

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Figure 3. Radio filter produced by means of the RSF/RheoMetalTM process. A unique feature of this product is the weight reduction of 1.6 kg facilitated by wall thicknesses as low as 0.4 mm at 40 mm height (aspect ratio 100). High conductivity low Si alloys were used, and thermal transport properties further increased by up to 20% depending on the alloy composition by means of heat treatments, as depicted in the top right diagram by means of arrows denoting the course of the latter (images provided by Comptech AB, Skillingaryd, Sweden).

Advances in Metal Casting Technology: A Review of State of the Art, Challenges and Trends—Part II: Technologies New and Revived

This article introduces the paper ‘Advances in Metal Casting Technology: A Review of State of the Art, Challenges and Trends—Part II: Technologies New and Revived’ published by MDPI. 1. Overview: 2. Abstracts or Introduction The present text, as the second part of an editorial for the Special Issue “Advances in Metal Casting Technology,” builds upon

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Figure 2. Schematic diagrams of casters used in this study. (a) Melt spinning single roll caster, (b) melt drag single roll caster, (c) vertical type high-speed twin roll caster.

Fluidity of Pure Aluminum in a Narrow Channel Die Gap during Die Casting

This article introduces the paper [‘Fluidity of Pure Aluminum in a Narrow Channel Die Gap during Die Casting’] presented at the [‘Metals, MDPI’] 1. Overview: 2. Research Background: Background of the Research Topic: The increasing demand for lightweight heat sinks with excellent heat dissipation has driven interest in pure aluminum due to its superior thermal

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Figure 2 Effective stress contours vs. Time

Development of Copper MIM Powders for Thermal Management Applications

This article introduces the paper ‘Development of Copper MIM Powders for Thermal Management Applications’ published by ‘Not explicitly stated in the paper’. 1. Overview: 2. Abstracts or Introduction Abstract Metal Injection Moulding is continuing to see strong growth in the variety and volume of parts andmaterials in use. We report here the development and application

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Design of Conformal Cooling Channels Using Numerical Methods in a Metal Mold and Calculating Exergy Destruction in Channels

Design of Conformal Cooling Channels Using Numerical Methods in a Metal Mold and Calculating Exergy Destruction in Channels

This article introduces the paper [‘Design of Conformal Cooling Channels Using Numerical Methods in a Metal Mold and Calculating Exergy Destruction in Channels’] published by [‘Scientia Iranica’]. 1. Overview: 2. Abstracts or Introduction Shorter cycle times and improved product quality are achievable through faster cooling in metal molds. Conventional manufacturing limits cooling channel design to

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