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Experiment Evaluation for the Heavy-weight Impact Sound of Dry Double-floor System - Effect of Rubber Hardness and Ceiling Structure -

건식이중바닥구조의 중량충격음에 대한 실험적 평가 - 지지구조 및 천장구조 구성에 따른 영향 -

  • Received : 2012.09.13
  • Accepted : 2012.12.04
  • Published : 2013.01.20

Abstract

The 1st assessment(performance test) was applied to assure the floor impact sound performance for developing the dry double-floor with the change of rubber hardness of the upper panel's support and the ceiling structure of the sub-floor. Depends on the change of the rubber hardness in sub-structure, the heavy-weight sound impact value is improved up to 3 dB, and the light-weight sound impact value is moved up to 21 dB, comparing with the bare-slab. Also, the improved value for the floor impact sound conjugating with the sub-floor's ceiling was 5 dB. Based on this result, the 2nd assessment(performance test) was made the state that the rubber hardness of the sub-floor support was ranged between 50 and 70 for considering the stability of walking patients. In addition to this process, the assessment was carried out with a variety of ceiling structure applied to the dry double-floor structure with the air flow system on the sub-floor's ceiling. The result for the 2nd assessment proved that TYPEII-3 had the better sound reduction performance in the heavy-weight impact sound test than other types, and also for the light-weight impact sound TYPEII-3 had the 29 dB sound reduction performance overall. Henceforth, based on the result the research for the sound reduction performance from the floor impact sound shall be ongoing process as well as the development of a double-dry floor and a sound reduction ceiling to suitable on the field.

Keywords

References

  1. Suzuki, H., 2000, Resonance Frequencies and Loss Factors of Various Single-degree-of Freedom Systems, J. Acoust. Soc. Jpn.(E), Vol. 21, No. 3, pp 163-166. https://doi.org/10.1250/ast.21.163
  2. Choi, H. J., Kim, K. W., Yeon, J. O., Yang, K. S. and Kim, K, H., 2011, 2011, Evaluation of Ceiling Structure Influencing to the Floor Impact Sound, Proceedings of the KSNVE Annual Spring Conference, pp. 246-247.
  3. Kim, J. H., Yoo, S. Y., Jeon, J. Y. and Kim, K., 2012, Evaluation of Floor Serviceability for Dry Floor Systems in Residential Buildings, Proceedings of the KSNVE Annual Spring Conference, pp. 699-700.
  4. KS F 2810-1: 2001, Field Measurements of Impact Sound Insulation of Floors Part 1 : Method Using Standard Light Impact Source.
  5. KS F 2810-2: 2001, Field Measurements of Impact Sound Insulation of Floors Part 1 : Method Using Standard Heavy Impact Source.
  6. Jeon, J. Y., Ryu, J. K., Jeong, J. H. and Tachibana, H., 2006, Review of the Impact Ball in Evaluating Floor Impact Sound, Acta Acustica United with Acustica, Vol. 92, No. 5, pp. 777-786.

Cited by

  1. Development of Analytical Impact Force Models for Floor Impact Vibration and Acoustic Numerical Analysis vol.6, pp.5, 2016, https://doi.org/10.3390/app6050120
  2. Questionnaire Survey on Annoyance and Disturbance of Floor Impact Sound vol.28, pp.6, 2018, https://doi.org/10.5050/KSNVE.2018.28.6.685