Tag Archives: 금형

Fig. 1. a) Pin holes observed in the top side casting; b) Blow holes observed in tapped holes; c) Porosity is observed in top side of the casting.

Numerical and experimental approach to eliminate defects in al alloy pump- crank case processed through gravity die casting route

S.AravindP.RagupathiG.VigneshDepartment of Mechanical Engineering, Karpagam Academy of Higher Education, Coimbatore, Tamil Nadu 641 021, India Received 30 June 2020, Accepted 14 July 2020, Available online 14 August 2020. Abstract A numerical investigation was carried out with the help of computer based casting simulation software to eliminate defects such as shrinkage due to solidification, cracks, imperfect

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Figure 1. Crank case specimen produced with the HPDC process.

Minimizing the Casting Defects in High Pressure Die Casting Using Taguchi Analysis

Authors Surkhail Tariq 1  Adnan Tariq   2  Manzar Masud 3  Zabdur Rehman  4 1 Department of Mechanical Engineering, Wah Engineering College, University of Wah, Wah Cantt 47040, Pakistan 2 Department of Mechanical Engineering, Wah Engineering College, University of Wah, Wah Cantt 47040,Pakistan 3 Department of Mechanical Engineering, Capital University of Science and Technology, Islamabad 44000, Pakistan 4 Department of Mechanical Engineering, Air University

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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. 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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ALUMINUM DIE CASTING

알루미늄 다이캐스팅이란? 알루미늄 다이캐스팅은 다이캐스팅 부품의 한 유형으로 가열된 액체 알루미늄 또는 알루미늄 합금을 다이캐스팅 머신에 장착된 다이에 고압으로 주입하여 제품을 만드는 공정입니다. 금속 알루미늄 및 알루미늄 합금은 유동성 및 가소성이 우수하여 다양하고 복잡한 형태로 만들어 질 수 있으며 더 높은 정확도로 제조 될 수 있습니다. 또한 알루미늄 및 알루미늄 합금은 우수한 열 전도성, 작은 비중

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Castman Industry Parts

INDUSTRIES SERVED

(주)캐스트맨은 다이캐스팅 업계의 선도적인 활동을 통해 뛰어난 다이캐스팅 제품을 소개하고 있으며, 제조 산업에 지속적으로 기여하고 있습니다. 고압 다이캐스팅은 종종 많은 부품을 신속하게 제조하는데 최적화된 매우 탁월한 공정이며, 캐스트맨은 높은 수준의 엔지니어링 기술을 보유하고 있습니다. CASTMAN의 고압 다이캐스팅을 사용하면 엄격하게 관리되는 프로세스를 통해 복잡한 어떠한 형상 부품도 신속하게 생산할 수 있습니다. 세계적인 전문 엔지니어링 기술 보유

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