Academic literature on the topic 'Casting simulation software'

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Journal articles on the topic "Casting simulation software"

1

Takahashi, Isamu, and Yo Yamagata. "CASTING SIMULATION SOFTWARE ADSTEFAN." Proceedings of The Computational Mechanics Conference 2002.15 (2002): 93–94. http://dx.doi.org/10.1299/jsmecmd.2002.15.93.

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2

Choudhari, C. M., K. J. Padalkar, K. K. Dhumal, B. E. Narkhede, and S. K. Mahajan. "Defect Free Casting by Using Simulation Software." Applied Mechanics and Materials 313-314 (March 2013): 1130–34. http://dx.doi.org/10.4028/www.scientific.net/amm.313-314.1130.

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The use of Aluminum castings parts in the automotive industry has increased dramatically over the past few decades. The driving force for this increased use is vehicle weight reduction for improved performance. In many cases the mechanical properties of the cast aluminum parts are superior to those of the cast iron or wrought steel parts being used.This paper proposes the computer simulation of the sand casting of Aluminum Plate. It aims to study the behavior of fluid flow during mould filling and solidification and to optimize the process parameters, which help to predict and control casting
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3

Zeng, Jian Min, Jie Liang, Zhi Liu Hu, Ping Chen, and Li Hua Liang. "Numerical Simulation Software of Casting Process used for Computer Aided Instruction." Advanced Materials Research 399-401 (November 2011): 13–16. http://dx.doi.org/10.4028/www.scientific.net/amr.399-401.13.

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Simulation software is an essential tool for today‘s engineers. Its application enables castings to be designed with predicting the final results prior to they are produced. Thus, the simulation plays significant role in casting production. If a realistic calculation of the mold filling and solidification processes can be made it is possible to predict casting defects caused by casting system and/or casting design. In order to understand the changes occurring during solidification of casting, numerical simulation has been used in our classroom teachings for postgraduates. The software structur
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4

Chen, Yi, Gang Yang, Yi Yang, Kang Sheng Wang, and Chen Guang Lu. "Casting Process and Simulation of K19 Cylinder Block." Applied Mechanics and Materials 602-605 (August 2014): 311–15. http://dx.doi.org/10.4028/www.scientific.net/amm.602-605.311.

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Cylinder blocks are the most important parts of engine, and their qualities will fundamentally determine the efficiency of engine. In this work, the casting process of K19 engine cylinder block was studied. A casting process was designed and assessed by the numerical software MAGMA to produce cylinder block castings. An actual experiment of casting was carried out and the mechanical properties of the casting were examined. The simulation results show the liquid metal smoothly fills the casting mold and no shrinkage cavity and porosity are formed in the castings. The cylinder block produced by
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5

Majerník, Ján, Monika Karková, and Ján Kmec. "Assessment of Suitability of the Design of Gating System with the Use of Simulation Software." Key Engineering Materials 756 (September 2017): 136–41. http://dx.doi.org/10.4028/www.scientific.net/kem.756.136.

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The quality of thin wall castings produced by metal die-casting depends on the coherence and consistency of various aspects influencing the process of casting cycle. The qualitative properties of castings should already be considered in the design phase of construction of the gating system. The simulation software is an effective facility for the initial revealing of defects of the design phase. The assessment of casting cycle by the means of simulation predicts an incidence of defects of the casting core in the design phase and therefore reduces both the incidence of defects in the production
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6

Dong, Yi, Xiao Ming Fan, and Bin Liu. "Numerical Simulation and Technology Optimization of Rear Oil Seal Bearing Die Castings Based on ProCAST." Advanced Materials Research 189-193 (February 2011): 4008–13. http://dx.doi.org/10.4028/www.scientific.net/amr.189-193.4008.

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In production,the Φ105 mm hole of rear oil seal bearing die castings often appear porosity, shrinkage and other defects , resulting in the parts to scrap. The existing gating system design of rear oil seal bearing die castings was improved , and the flow and temperature field of the two programs that before and after improvement were analyzed by ProCAST software. The simulation results predicted the casting defects, and the conclusion was consistent with the production. By using the improved process optimization, the rejection rate of die castings can be reduced effectively. Die casting is a c
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7

He, Bin Feng. "Simulation and Optimization of Steel Casting by Sand Casting." Advanced Materials Research 706-708 (June 2013): 258–61. http://dx.doi.org/10.4028/www.scientific.net/amr.706-708.258.

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Casting defects will always occurred in the cast-steel castings. In order to eliminate the shrinkages more and more risers had been used which increased the final cost sharply. The traditional method was used to the designing process; besides that, the foundry simulation software was introduced to prove the rationality of the technique. The software helps to predict the proper position of the shrinkages. The cooling system was optimized after the analyzed and the final simulation results show the rationality of foundry technique.
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8

Xue, Xiang, Yue Ping Wang, and Yue Bing Zhang. "Numerical Simulation of Thermal Stress and Deformation in a Casting Using Finite Difference Method." Materials Science Forum 762 (July 2013): 218–23. http://dx.doi.org/10.4028/www.scientific.net/msf.762.218.

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A software code for simulating thermal stress in castings was developed using finite difference method (FDM). The one way coupled map model was adopted to treat the relationship between the solidification and the thermal stress in castings. A method of killing the mold element whose temperature begins to decrease was employed to deal with the mold/casting interaction. The thermal stress and deformation in a stress frame casting were experimentally studied and analyzed by this software code. The results simulated and the residual stress measured are in good agreement. This indicates that the so
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9

Samavedam, S., and S. Sundarrajan. "Al-Si and Al-Si-Mg Cast Alloys Shrinkage Porosity Estimation." Archives of Foundry Engineering 16, no. 1 (2016): 61–68. http://dx.doi.org/10.1515/afe-2016-0004.

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Abstract US A356 and US 413 cast aluminium alloys shrinkage characteristic have been discussed in the present study. Specific volume reduction leads to shrinkage in castings and it can be envisaged as a casting defect. Finite difference based casting process simulation software has been used to study the shrinkage characteristic and it is quantified using mathematical formulae. The three dimensional model of the shrinkage defect has been constructed using CAD application software. Shrinkage characteristic has also been quantified through experimental validation studies and compared well with c
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10

Jia, Zhi Xin, Ning Bo Hu, Ji Qiang Li, Li Jun Liu, and Li Qiong Chen. "Die-Casting Die Design Based on the Application of CAE Simulation." Applied Mechanics and Materials 201-202 (October 2012): 541–44. http://dx.doi.org/10.4028/www.scientific.net/amm.201-202.541.

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High pressure die casting is a high volume component manufacturing process which is used extensively in many aspects. There are many factors affecting the quality of die-casting die. In this paper, the CAE simulations of filling and solidification processes for die-casting are studied. Numerical analyses are presented for two practical die-casting parts using HZ CAE software. The temperature distributions and filling states in solidification and filling process are presented. Then the deficiencies of the part are predicted. Based on the analyzing results, the structures of the two dies are opt
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