Study on the effect of preheating temperature of SLM process on characteristics of CoCrMo alloy

  • Bang, Gyung Bae
  • Park, Jung Hyun
  • Kim, Won Rae
  • Hyun, Soong-Keun
  • Park, Hyung-Ki
  • 외 2명
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초록

This is a study on the effects of the pre-heating temperature of the selective laser melting (SLM) process on the microstructure and mechanical characteristics of CoCrMo alloy specimens. Specimens were created using 36 process conditions at pre-heating temperatures of 50, 100, and 150 ?, and high-density process conditions with 99.99% density or higher were presented. The changes of characteristics such as microstructure, mechanical characteristics, and residual stress were observed according to pre-heating temperature. The phase trans-formation from FCC alpha-Co phase to martensitic epsilon-Co phase was inhibited because the cooling speed increased as the pre-heating temperature increased. And that was caused the coarse grain of alpha phase. In addition, elongation properties were improved because the FCC alpha-Co phase acted as a deformation mechanism as the martensitic epsilon-Co phase decreased; however, strength was only minimally reduced because the epsilon-Co phase of the nano scale formed an orientation relationship. Consequently, the cooling speed increased as the pre-heating temperature increased (50 ?& nbsp;->& nbsp;150 ?), which inhibited the alpha-Co phase ->& nbsp;martensitic epsilon-Co phase trans-formation, resulting in decreased residual stress and improved mechanical characteristics.

키워드

Selective laser meltingCoCrMoPre-heatingResidual stressMechanical propertiesEnergy densityRESIDUAL-STRESSMECHANICAL-PROPERTIESSCANNING STRATEGIESMELTING PROCESSLASERBEHAVIORMICROSTRUCTURECOMPONENTSFUSION
제목
Study on the effect of preheating temperature of SLM process on characteristics of CoCrMo alloy
저자
Bang, Gyung BaePark, Jung HyunKim, Won RaeHyun, Soong-KeunPark, Hyung-KiLee, Taeg WooKim, Hyung Gium
DOI
10.1016/j.msea.2022.143020
발행일
2022-04-28
유형
Article
저널명
Materials Science & Engineering A: Structural Materials: Properties, Microstructure and Processing
841