Applied Mechanics and Materials
Vol. 472
Vol. 472
Applied Mechanics and Materials
Vol. 471
Vol. 471
Applied Mechanics and Materials
Vol. 470
Vol. 470
Applied Mechanics and Materials
Vol. 469
Vol. 469
Applied Mechanics and Materials
Vol. 468
Vol. 468
Applied Mechanics and Materials
Vol. 467
Vol. 467
Applied Mechanics and Materials
Vols. 465-466
Vols. 465-466
Applied Mechanics and Materials
Vol. 464
Vol. 464
Applied Mechanics and Materials
Vols. 462-463
Vols. 462-463
Applied Mechanics and Materials
Vol. 461
Vol. 461
Applied Mechanics and Materials
Vol. 460
Vol. 460
Applied Mechanics and Materials
Vol. 459
Vol. 459
Applied Mechanics and Materials
Vols. 457-458
Vols. 457-458
Applied Mechanics and Materials Vols. 465-466
Paper Title Page
Abstract: The term direct investment casting represents the employment of pattern fabricated by rapid prototyping technique have been reduce the cost and production lead time. The non-wax materials having robust ability on producing pattern in accuracy stability and clean burnout. However 3D printer (3DP) parts are powder based materials and not easily burnout during firing process. The purpose of this investigation were to evaluate the ZP150 powder materials as a sacrificial pattern to be used in investment casting (IC) process. Result shows powder based patterns of 3DP process failed to disintegrate completely even at high temperature during collapsibility investigations. However the pattern become brittle and easily remove by water pressure. Therefore the ceramic mould can be used for metal casting.
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