Tag Archives: Die casting

Fig. 1. XRD profile of the ADC12 alloy sample produced by the diecasting process. Bragg diffractions of Al and Si polycrystals are observed. Note that the Bragg diffractions of Au2Si and AuCu3 alloys are detected. The XRD profile of the ADC12 ingot sample was also displayed for comparison.

Effect of vacuum annealing and characterization of diecast ADC12 aluminum alloys

Effect of vacuum annealing and characterization of diecast ADC12 aluminum alloys Jo, Jihoon (Department of Materials Science and Engineering, Chosun University) ; Ham, Daseul (Department of Materials Science and Engineering, Chosun University) ; Oh, Seongchan (Department of Materials Science and Engineering, Chosun University) ; Cha, Su Yeon (Department of Materials Science and Engineering, Chosun University) ; Kang, Hyon Chol (Department

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Fig. 2. Baseline and Optimized plunger speed profiles.

On the probabilistic nature of high-pressure die casting

EwanLordanaYijieZhangaKunDouabAlainJacotacChrysoulaTzileroglouaPaulBlakedZhongyunFanaaBrunel Centre for Advanced Solidification Technology, Brunel University London, Uxbridge, Middlesex, UB83PH, UKbSchool of Metallurgy and Environment, Central South University, Changsha, 410083, Hunan, ChinacCalcom ESI SA, SwitzerlanddJaguar Land Rover Ltd, Coventry, CV3 4LF, UK Abstract This article unmasks the probabilistic nature of high-pressure die casting; specifically, the cause of scatter in the tensile ductility of

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Fig. 2. Comparison of strengths of salt cores squeezed and shot from different salt kinds (mean value of 6 cores; fraction 0.063 – 1.0 mm; A = squeezed cores (104 MPa); B = shot ones (binder Na – water glass 7.5 – 8.0 bars)

Lost Cores for High-Pressure Die Casting

P. Jelínek, E. Adámková*Department of Metallurgy and Foundry Engineering, VŠB-Technical University of Ostrava, listopadu 2172/15, 708 33 Ostrava – Poruba, Czech Republic*Corresponding author. E-mail address: eliska.adamkova@vsb.czReceived 04.03.2014; accepted in revised form 30.03.2014 Abstract Development of salt cores prepared by high-pressure squeezing and shooting with inorganic binders has shown a high potential of the given technology

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Sources of Porosity in Die Casting

How to Control Porosity With Processing Parameters

The porosity of die cast parts is one of the primary concerns of buyers and designers. In die casting, porosity refers to the air pockets, small voids, or pores found within a metal part. Too much porosity in a part can be dangerous as it can compromise the structural integrity of the component. Porosity can

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Schematic of a hot-chamber machine

Hot Chamber Die Casting Method vs Cold Chamber Die Casting Method

Depending on the project, aluminium casting is carried out through a “hot” or “low” process. Diecasting is one of the most economical and fast molding processes. The advantage of this production process is that hundreds of thousands of castings can be produced relatively quickly using a single mold. All parts produced are of uniform quality

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measuring can be done three ways

How to Avoid Die Casting Defects

Reference : https://diecasting.com/blog/how-to-avoid-die-casting-defects/ The production of die-castings includes a number of steps, any of which can result in a defective casting if not properly executed. Since repairing bad castings can be expensive, it’s important to avoid defect occurrences if possible. We’ll look at some common to areas of  die casting defects — including wall thickness

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2020-2025 High Pressure Die Casting Market Snapshot

HIGH PRESSURE DIE CASTING MARKET – GROWTH, TRENDS, COVID-19 IMPACT, AND FORECASTS (2021 – 2026)

The High Pressure Die Casting Market is segmented by Raw Material (Aluminum, Zinc, and Magnesium), Application (Automotive, Electrical and Electronics, Industrial Applications, and Other Applications), and Geography. Reference Source : https://www.mordorintelligence.com/industry-reports/high-pressure-die-casting-market Market Snapshot Market Overview The high pressure die casting market is estimated to register a CAGR of 6.36% during the forecast period, 2020-2025. The

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다이 캐스팅의 대부분을 차지하는 주요 합금

HPDC in the Automotive Industry

Origin Article : https://www.diecastingdesign.org/blog/advancements-in-die-casting/ HPDC in the Automotive Industry There are several reasons HPDC is a popular method within the automotive industry. For starters, automotive designers quickly realized the potential in HPDC based on its ability to successfully achieve crash and safety-critical application requirements. HPDC also helps the growing interest in overall improved consumption by

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FLOW-3D Courtesy Littler Diecasting Corporation, (www.flow3d.co.kr)

CFD for die casting processes

Computer simulation techniques for die casting processes Die casting is the go-to manufacturing technology for mass-produced, lightweight components made from metal, predominantly Aluminum and Magnesium alloys. Most of the high pressure die casted parts are manufactured for the automotive industry but consumer electronics are also making use of this technology. High Pressure Die Casting (HPDC)

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구배 치수가 있는 구배 원통의 종단 뷰

Die casting Design geometry

Design geometry reference : https://en.wikipedia.org/wiki/Die_casting There are a number of geometric features to be considered when creating a parametric model of a die casting: Draft is the amount of slope or taper given to cores or other parts of the die cavity to allow for easy ejection of the casting from the die. All die cast

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