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  5. Artificial Lightweight Aggregates Made from Pozzolanic Material: A Review on the Method, Physical and Mechanical Properties, Thermal and Microstructure
 
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Artificial Lightweight Aggregates Made from Pozzolanic Material: A Review on the Method, Physical and Mechanical Properties, Thermal and Microstructure

Journal
Materials
Date Issued
2022-06-01
Author(s)
Hao D.L.C.
Rafiza Abd Razak
Universiti Malaysia Perlis
Kheimi M.
Zarina Yahya
Universiti Malaysia Perlis
Mohd. Mustafa Al Bakri Abdullah
Universiti Malaysia Perlis
Nergis D.D.B.
Fansuri H.
Ediati R.
Mohamed R.
Abdullah A.
DOI
10.3390/ma15113929
Handle (URI)
https://hdl.handle.net/20.500.14170/4992
Abstract
As the demand for nonrenewable natural resources, such as aggregate, is increasing worldwide, new production of artificial aggregate should be developed. Artificial lightweight aggregate can bring advantages to the construction field due to its lower density, thus reducing the dead load applied to the structural elements. In addition, application of artificial lightweight aggregate in lightweight concrete will produce lower thermal conductivity. However, the production of artificial lightweight aggregate is still limited. Production of artificial lightweight aggregate incorporating waste materials or pozzolanic materials is advantageous and beneficial in terms of being environmentally friendly, as well as lowering carbon dioxide emissions. Moreover, additives, such as geopolymer, have been introduced as one of the alternative construction materials that have been proven to have excellent properties. Thus, this paper will review the production of artificial lightweight aggregate through various methods, including sintering, cold bonding, and autoclaving. The significant properties of artificial lightweight aggregate, including physical and mechanical properties, such as water absorption, crushing strength, and impact value, are reviewed. The properties of concrete, including thermal properties, that utilized artificial lightweight aggregate were also briefly reviewed to highlight the advantages of artificial lightweight aggregate.
Funding(s)
Deanship of Scientific Research, Prince Sattam bin Abdulaziz University
Subjects
  • aggregate crushing va...

  • aggregate impact valu...

  • artificial lightweigh...

  • geopolymer

  • pozzolanic materials

  • thermal properties

File(s)
research repository notification.pdf (4.4 MB) research repository notification.pdf (4.4 MB)
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Acquisition Date
Jan 12, 2026
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