Showing 41 - 60 results of 331 for search '((("malting" OR "smelting") OR "melting") OR "sealing")', query time: 0.13s Refine Results
  1. 41

    Filmwise condensation of steam on pin fin arrays fabricated by selective laser melting by Ho, Jin Yao, Leong, Kai Choong

    Published 2020
    “…In this study, nine vertical flat plates of pin fin arrays were fabricated by selective laser melting to investigate the possible enhancements of external condensation. …”
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    Journal Article
  2. 42
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    Effect of geometric scaling on the microstructural development of selective laser melted metal parts by Ng, Angelin Shia Yin

    Published 2022
    “…This allows narrower and deeper melt pools to form. Meanwhile, an increased defocusing distance allows shallower melt pools to form. …”
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    Final Year Project (FYP)
  4. 44

    Synthesis and electrochemical performance of aluminum antimonide alloy anode prepared by melt spinning by Kharistal, Daniel Julian

    Published 2014
    “…The melt spun Al-Sb alloy has unique morphological structure compared to the conventional cast Al-Sb alloy. …”
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    Thesis
  5. 45

    A novel melt-drawing device for fabrication of biodegradable multi-material scaffolds by Nguyen, Minh Dung

    Published 2016
    “…In this report, a novel melt-drawing device for fabrication of biodegradable multi-material scaffolds is designed and developed to produce polymer microfiber bundle. …”
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    Final Year Project (FYP)
  6. 46

    A Review of Selective Laser Melted NiTi Shape Memory Alloy by Khoo, Zhong Xun, Liu, Yong, An, Jia, Chua, Chee Kai, Shen, Yu Fang, Kuo, Che Nan

    Published 2018
    “…Recently, a number of studies on Selective Laser Melting (SLM) of NiTi were conducted to explore the various aspects of SLM-produced NiTi. …”
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    Journal Article
  7. 47

    Synchrotron quantification of ultrasound cavitation and bubble dynamics in Al–10Cu melts by Xu, WW, Tzanakis, I, Srirangam, P, Mirihanage, WU, Eskin, DG, Bodey, AJ, Lee, PD

    Published 2016
    “…The observed tendencies were discussed in relation to bubble growth mechanisms of Al alloy melts.…”
    Journal article
  8. 48

    Current trends in additive manufacturing of selective laser melting for biomedical implant applications by Nazari, Aufa Adlia, Hassan, Mohamad Zaki, Ismail, Zarini, Ramlie, Faizir, Jamaludin, Khairur Rijal, Md. Daud, Mohd. Yusof, Ren, James

    Published 2024
    “…This review studied the issue of metallic implants designed by powder bed fusion of selective laser melting (SLM) techniques on the surface morphology, stress shielding effects, osseointegration, and antibacterial capabilities owing to implant failure. …”
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    Article
  9. 49

    Raising Two More Fundamental Questions Regarding the Classical Views on the Rheology of Polymer Melts by Ibar, Jean Pierre

    Published 2024
    “…The current paradigm of polymer flow assumes that (i) the effect of the molecular weight of the macromolecules, M, and of the temperature, T, on the expression of the viscosity of polymer melts separate; (ii) the molecular weight for entanglement, Mc, is independent of T; and (iii) the determination of Mc by the break in the log viscosity curve against log M unequivocally differentiates un-entangled melts from entangled melts. …”
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    Article
  10. 50
  11. 51

    Simulations of melting in fluid-filled packed media due to forced convection with higher temperature by Soon, Genevieve, Zhang, Hui, Yang, Chun, Law, Adrian Wing-Keung

    Published 2022
    “…An original CFD-DEM method, named as CD-MELT, is developed to model the isothermal melting of a packed bed subjected to a forced convection with higher temperature. …”
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    Journal Article
  12. 52

    Fabrication of smart structures through selective laser melting (3D printing) (II) by Ong, Cindy

    Published 2016
    “…The functional properties of shape memory alloys (SMAs) are highly dependent on the alloy’s microstructure, and hence any factor that affects its microstructure, such as its composition, must be carefully controlled to ensure optimal functionality of the alloy. Selective Laser Melting (SLM) of Nickel-Titanium SMAs uses high energy lasers to melt the powder, which in turn alters the microstructure of the alloy. …”
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    Final Year Project (FYP)
  13. 53

    Convective heat transfer performance of airfoil heat sinks fabricated by selective laser melting by Ho, Jin Yao, Wong, Kin Keong, Leong, Kai Choong, Wong, Teck Neng

    Published 2017
    “…This paper presents the forced convective heat transfer performances of novel airfoil heat sinks produced by Selective Laser Melting (SLM). Heat sinks with staggered arrays of NACA 0024 and NACA 4424 airfoil shaped fins were investigated experimentally and the results were compared with conventional heat sinks with circular and rounded rectangular fins. …”
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    Journal Article
  14. 54

    Tipping point in ice-sheet grounding-zone melting due to ocean water intrusion by Bradley, AT, Hewitt, IJ

    Published 2024
    “…Marine ice sheets are highly sensitive to submarine melting in their grounding zones, where they transition between grounded and floating ice. …”
    Journal article
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    Microstructure and mechanical behavior of 17-4 precipitation hardenable steel processed by selective laser melting by Rafi, H. Khalid, Pal, Deepankar, Patil, Nachiket, Starr, Thomas L., Stucker, Brent E.

    Published 2014
    “…Columnar grains of smaller diameters (<2 µm) emerged within the melt pool with a mixture of martensite and retained austenite phases. …”
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    Journal Article
  18. 58

    Selective laser melting of 316L stainless steel/ TiC metal matrix composite by Ho, Zi Liang

    Published 2020
    “…These profiles are laser melted individually onto a substrate that has a metal powder feedstock spreading over it. …”
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    Final Year Project (FYP)
  19. 59
  20. 60

    Investigation studies on mechanical properties of PH15-5 stainless steel for selective laser melting by Tan, Wei Jie

    Published 2019
    “…In this final year project, the focus would be on the powder bed fusion category using the selective laser melting (SLM) process. SLM is used to produce metal objects using powders. …”
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    Final Year Project (FYP)