All Issue

2025 Vol.1, Issue 2

Article

31 December 2025. pp. 75-86
Abstract
References
1

Federal Aviation Administration (FAA) (2014), Guidelines and Procedures for Maintenance of Airport Pavements, Advisory Circular 150/5380-6B, p.9-11.

2

White, G. (2018), State of the Art: Asphalt for Airport Pavement Surfacing, International Journal of Pavement Research and Technology, 11(1), p.77-98.

10.1016/j.ijprt.2017.07.008
3

이시욱 (2022), 마그네슘 인산염 세라믹 콘크리트의 공항 줄눈 콘크리트 포장 유지보수 사례 연구, 한국도로학회논문집, 24(6) p.109-117.

10.7855/IJHE.2022.24.6.109
4

Park H. W., Kim D. H., Lee J. H., Yum W. S., Jeong J. H. (2023), Influence of Mix Properties of Concrete Slabs on the Performance of Airport Pavements, Proceedings of the Institution of Civil Engineers – Transport, 176(1), p.3-13.

10.1680/jtran.19.00009
5

Federal Highway Administration (FHWA) (2014), Concrete Pavement Preservation Guide, 2nd Edition, FHWA Publication No. FHWA-HIF-14-014, Federal Highway Administration. Washington, D. C.

6

Cement Concrete & Aggregates Australia (CCAA) (2009), Concrete Pavement Maintenance/Repair, Cement Concrete & Aggregates Australia, p.9.

7

황인택, 마그네슘 인산세라믹(MPC)을 활용한 공항 강성포장 보수재에 관한 연구, 동신대학교 박사학위논문.

8

Qiao F., Chau C. K., Li Z. (2010), Property Evaluation of Magnesium Phosphate Cement Mortar as Patch Repair Material, Construction and Building Materials, 24(5), p.695-700.

10.1016/j.conbuildmat.2009.10.039
9

Wagh A. S., Jeong S. Y. (2004), Chemically Bonded Phosphate Ceramics. I: A Dissolution Model of Formation, Journal of the American Ceramic Society, 86(11), p.1838-1844.

10.1016/B978-008044505-2/50006-5
10

Wagh A. S. (2013), Recent Progress in Chemically Bonded Phosphate Ceramics, International Scholarly Research Notices, 201, p.983731.

10.1155/2013/983731
11

Ramsey M. A., Scott D. A., Weiss C. A., Tingle J. S. (2020), Development of Magnesium Phosphate Cement (MPC) Concrete Mixture Proportioning for Airfield Pavements :Laboratory and Field Validation MPC Test report. US Army Engineer Research and Development Center, Geotechnical and Structures Laboratory Vicksburg United States.

10.21079/11681/35475
12

Zheng Y., Zhou Y. Huang X., Luo H. (2022), Effect of Raw Materials and Proportion on Mechanical Properties of Magnesium Phosphate Cement, Journal of Road Engineering, 2(3), p.243-251.

10.1016/j.jreng.2022.06.001
13

고동우 (2020), 산화마그네슘 기반 보수 모르타르의 자기치유 성능에 관한 실험적 연구, 한양대학교 석사학위논문.

14

이후석 (2021), 마그네시아 인산염계 복합체를 활용한 긴급 복구용 도로포장 보수재의 특성, 우석대하교, 박사학위논문.

15

설정현 (2023), 산화마그네슘 인산염 복합체 기반 섬유보강 보수 모르타르 개발에 관한 실험적 연구, 한양대학교 석사학위논문.

16

이경호, 윤현섭, 양근혁 (2017), 마그네시아-인산칼륨 시멘트에 대한 인산염 비 및 물-결합재비의 영향, 콘크리트학회논문집, 29(3), p.275-281.

10.4334/JKCI.2017.29.3.275
Information
  • Publisher :The Korean Society of Airport
  • Publisher(Ko) :한국공항학회
  • Journal Title :Journal of the Korean Society of Airport
  • Journal Title(Ko) :한국공항학회지
  • Volume : 1
  • No :2
  • Pages :75-86
  • Received Date : 2025-08-08
  • Revised Date : 2025-12-16
  • Accepted Date : 2025-12-19