DOI QR코드

DOI QR Code

합성수지 거푸집의 성능평가 및 현장 적용성에 관한 연구

A Study on the Performance Evaluation and Field Application of Synthetic Resin Formwork

  • Kim, Tae-Hui (Department of Architectural Engineering, Mokpo National University) ;
  • Ahn, Sung-Jin (Department of Architectural Engineering, Mokpo National University) ;
  • Lee, Young-Do (Department of Architectural Engineering, Kyungdong University) ;
  • Nam, Kyung-Yong (UTOP E& A)
  • 투고 : 2018.09.05
  • 심사 : 2018.10.15
  • 발행 : 2018.12.20

초록

본 논문은 합성수지 거푸집 성능평가를 위해 길이 변화율, 충격시험, 소음테스트를 실시하였다. 또한 현장 적용을 통해 합성수지 거푸집 시공성에 대해 검토하였다. 실험결과, 가열 길이 변화 시험, 충격시험은 KS기준치를 모두 만족하는 것으로 나타났다. 소음 테스트의 경우 유로폼이 평균 106dB(A)을 나타냈으며, 합성수지 거푸집은 평균 100.4dB(A)을 나타났다. 음압레벨의 경우, 합성수지 거푸집이 유로폼보다 고주파영역에서 낮게 나타나 시공시 소음 피로도가 적고 주변민원은 감소할 것으로 판단된다. 마지막으로 현장적용결과, 콘크리트 타설 중 거푸집 휨 현상이나 배부름 현상은 발생하지 않았다. 또한 콘크리트 표면 마감도가 합성수지 거푸집이 유로폼면 보다 더 우수한 것으로 나타났다.

In This study, length variation test, shock test, and noise test were conducted to evaluate the performance of synthetic resin form. In addition, the handling easiness of synthetic resin form was examined through field application. Results of both thermal length variation test and shock test satisfied the KS standards. for noise test, the result of uro-form was 106.7dB(A) in average while that of synthetic resin form was 100.4dB(A) in average. It is considered that the high sound pressure level of euro-form with this noise characteristic may have negative physical and psychological impact on people who are consistently exposed in the residential area. Finally, there was no warping or bulging of the mold during concrete placement in the field application. Also, the concrete surface finish of synthetic resin form was better than that of euro-form.

키워드

GCSGBX_2018_v18n6_577_f0001.png 이미지

Figure 1. Low density polyethylene(LDPE)

GCSGBX_2018_v18n6_577_f0002.png 이미지

Figure 2. thermal length variation test body

GCSGBX_2018_v18n6_577_f0003.png 이미지

Figure 4. Experimental photograph

GCSGBX_2018_v18n6_577_f0004.png 이미지

Figure 3. Noise test specimen

GCSGBX_2018_v18n6_577_f0005.png 이미지

Figure 5. Panoramic photograph

GCSGBX_2018_v18n6_577_f0006.png 이미지

Figure 6. Synthetic resin form construction

GCSGBX_2018_v18n6_577_f0007.png 이미지

Figure 7. Frequency noise factor according to form type

GCSGBX_2018_v18n6_577_f0008.png 이미지

Figure 8. Euro-form and Synthetic resin form connection

GCSGBX_2018_v18n6_577_f0009.png 이미지

Figure 9. Wall concrete placing

GCSGBX_2018_v18n6_577_f0010.png 이미지

Figure 10. Concrete finish

Table 1. Experimental plan

GCSGBX_2018_v18n6_577_t0001.png 이미지

Table 2. Quality standard of thermal length variation test

GCSGBX_2018_v18n6_577_t0002.png 이미지

Table 3. Eggplant type weight division

GCSGBX_2018_v18n6_577_t0003.png 이미지

Table 4. Experimental plan

GCSGBX_2018_v18n6_577_t0004.png 이미지

Table 5. Environmental condition

GCSGBX_2018_v18n6_577_t0005.png 이미지

Table 6. Site summary

GCSGBX_2018_v18n6_577_t0006.png 이미지

Table 7. Thermal length varition test

GCSGBX_2018_v18n6_577_t0007.png 이미지

Table 8. Impact test result

GCSGBX_2018_v18n6_577_t0008.png 이미지

Table 9. Noise test result

GCSGBX_2018_v18n6_577_t0009.png 이미지

참고문헌

  1. Won JY Lee SH, Park TW, Nam KY. Basic applicability of an insulated gang form for concrete building construction in cold weather. Construction and Building Materials. 2016 Oct;125:458-64. https://doi.org/10.1016/j.conbuildmat.2016.08.036
  2. Kim SH, Park KJ. The activation plan of plastic euro-form by comparison with the performance of wooden form. Korea Journal of Construction Engineering and Management. GREEN KICEM. 2009 Nov;10:215.
  3. Chung BY, Lee HC, Kim JH, Go SS. Performance evaluation of recycled synthetic resins euro-form by injection modeling method. Journal of the Korea Institute of Building Construction. 2010 Apr;10(2):105-13. https://doi.org/10.5345/JKIC.2010.10.2.105
  4. Kim DS, Kim YS. A study on the productivity analysis of new forming methods of reinforced concrete apartment. Journal of the Architectural Institute of Korea Structure & Construction. 2001 Apr;21(1):525-8.
  5. Kim DW, Park SW, Lee HS, Park Ms. A framework system for reducing the construction duration of the wall systems buildings. Journal of the Architectural Institute of Korea Structure & Construction. 2005 Oct;25(1):205-8.
  6. Chung BY, Lee G, Lee HC, Go SS. A study on the development of recycled synthetic resins euroform. Journal of the Architectural Institute of Korea, Structure & Construction. 2007 Jun;23(6):171-8.
  7. Kim TH, Ahn SJ Choi S Nam KY. A study on performance evaluation of multipurpose functional synthetic resin formworks. Proceedings of the Korea Institute of Building Construction Spring Conference; 2018 May 16; Jeju, Korea. Seoul (Korea): the Korea Institute of Building Construction; 2018. p. 245-6.
  8. Kim SY, Lee DM, Lim HS, Cho HH, Kang KI. Economic analysis of plastic panels for formwork panel selection. Proceedings of the Korea Institute of Building Construction Spring Conference; 2017 May 17; Gyeongju, Korea. Seoul (Korea): the Korea Institute of Building Construction. 2017. p. 54-5.
  9. PERI Group - Formwork Scaffolding Engineering: 89259 Weissenhorn(Germany): Available from: https://www.peri.com/en/products/formwork/wall-formwork/duo-formwork.html.
  10. PERI Group. Formwork Scaffolding Engineering [Internet]. Weissenhorn(Germany): Available from: https://www.peri.com/en/products/formwork/wall-formwork/duo-formwork.html.