Tytuł artykułu
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Warianty tytułu
Investigations aiming at obtaining a new modelling material based on plasticine
Konferencja
Fizyczne i Matematyczne Modelowanie Procesów Obróbki Plastycznej (17-18.05.2001 ; Warszawa, Polska
Języki publikacji
Abstrakty
Przedstawiono wstępne wyniki badań nad możliwością uzyskania nowego materiału modelowego bazującego na krajowej plastelinie, opracowano procedury uzyskiwania materiału doświadczalnego w postaci mieszanin plasteliny z kaolinem oraz kredą, z mieszanin tych otrzymano próbki do badań charakterystyk mechanicznych w procesie spęczania.
Preliminary results of studies on a possibility of obtaining a nw modelling material based on domestic plasticine. Procedures of obtaining an experimental material in the form of mixtures of plasyicine with kaoline and chalk. From these mixtures test pieces were prepared for examining mechanical characterictics in an upsetting process. The relationships obtained can be a basic for seeking cheap modelling materials simulating the behaviour of metals in a process of their plastic working.
Wydawca
Czasopismo
Rocznik
Tom
Strony
28--31
Opis fizyczny
Bibliogr. 13 poz., il., wykr.
Twórcy
autor
- Akademia Górniczo-Hutnicza w Krakowie
Bibliografia
- 1. Holmquist J. L.: Investigation of the Piercing Process by Means of Model Wax Billets. Iron and Steel Eng., Dec., 1952, pp. 53-68.
- 2. Bodsworth C., Halling J., Barton J.W.: The Use of Paraffin Wax as a Model Material to Simulate the Plastic Deforma· tion of Metals. Part 1: A Preliminary Investigations into the Mechanical Properties of Paraffin, Journ. of the Iron and Steellnst., March 1957, pp. 357-383.
- 3. A/tan T., Henning H.J., Sabroff A.M.: The Use of Model Materials in Predicting of Forming Loads in Metalworking. Trans. of the ASME. J. of Eng. for Industry, May 1970, pp. 444-452.
- 4. Blazynski T. Z.: Optimization of Die Design in the Extrusion of Rod Using Model Materials Experiments. Int. J. Mech. Sci., 13, 2,1971, pp. 113-131.
- 5. Oudin J., Ravalard Y., Rommens S.: On the Contribution of Waxes to the Simulation of Metal Forming Processe. North American Manufacturing Conference Proceedings, v. 8, 1980, pp. 166-170.
- 6. Lee R.S., Blazynski T.Z.: Mechanical Properties of a Composite Wax Model Materials Simulating Plastic Flow of Met als. J. Mech. Work. Tech., 9, 1984, pp. 301-312
- 7. Finer S., Kivivuori S., Kleemola H.: Stress-Strain Relationships of Wax-Based Model Materials. J. Mech. Work. Techn., 12, 1985, pp. 269-277.
- 8. Świątkowski K.: Physical Modelling of Metal Working Processes Using Wax-Based Model Materials. J. Mat. Proc. Tech. 72, 1997, pp. 272-276.
- 9. Brill K.: Plastillin und Natrium als Modellwerkstoffe. Ann. of the C.I.R.P., v. 12, 1963, pp. 69-74.
- 10. Gingher G. C., Padjen G.: Hot Strip Mill Edging Practices and Plasticine Modelling. 34th MWSP Conf. Proc., ISS AIME, v. XXX, 1993, pp. 3-12.
- 11. Young-Hoon Moon, Myung-Sik Chun, Joon-Jeong Yi, Jong Keun Kim: Physical Modelling of Edge Rolling in Plate Mill with Plasticine, Steel Research, 64, No. 11, 1993, 557-563
- 12. Kawanami S. T.: Rolling-deformation Characteristics of Clad Materials Determined by Model Experiment and Numerical Simulation: Experimental Rolling Tests Using Plasticine, J. Mat.. Proc. Tech., 47, 1995, pp. 375-384.
- 13. Pertence A.E.M., Cetlin P.R.: Analysis of New Model Material for the Physical Simulation of Metal Forming. J. Mat. Proc. Tech., 84, 1998, pp. 261-267.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPB3-0007-0004