Review
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Year 2021, , 58 - 65, 30.06.2021
https://doi.org/10.47137/uujes.934014

Abstract

References

  • Kumar RS. Textiles for industrial applications. CRC Press; 2013.
  • Kaddar TR. Future vision for development in textile science and engineering. J Textile Sci Eng, 2018; 8(381): 1-2.
  • Nefes A. Dokusuz kumaş üretimi yapan işletmelerde risklerin değerlendirilmesi. İş Sağlığı ve Güvenliği Uzmanlık Tezi. 2016.
  • Thangadurai K, Thilagavathi G and Bhattacharyya A. Characterization of needle-punched nonwoven fabrics for industrial air filter application. The Journal of the Textile Institute, 2014; 105(12): 1319-1326.
  • Payen J, Vroman P, Lewandowski M, Perwuelz A, Calle-Chazelet S and Thomas D. Influence of fiber diameter, fiber combinations and solid volume fraction on air filtration properties in nonwovens. Textile Research Journal, 2012; 82(19): 1948-1959.
  • Shahani F, Soltani P and Zarrebini M. The analysis of acoustic characteristics and sound absorption coefficient of needle punched nonwoven fabrics. Journal of Engineered Fibers and Fabrics, 2014; 9(2): 84-92.
  • Belachew A and Berhane Y. noise-induced hearing loss among textile workers. The Ethiopian Journal of Health Development, 1999; 13(2).
  • Talukdar M K. Noise pollution and its control in textile industry. Indian Journal of Fibre & Textile Research, 2001; 26: 44-49.
  • Jayawardana T S S, Perera M Y A and Wijesena G H D. Analysis and control of noise in a textile factory. International Journal of Scientific and Research Publications, 2014; 4(12): 1-7.
  • Russell S J. Handbook of Nonwovens. Woodhead Publishing Limited and CRC Press, England, 2007.
  • Allen Jr H C. Preparing cotton, web forming and bonding methods for cotton nonwovens. In Proceedings, 1998.
  • Albrecht W, Fuchs H and Kittelmann W. Nonwoven fabrics: raw materials, manufacture, applications, characteristics, testing processes. John Wiley & Sons, 2006.
  • http://www.edana.org/discover-nonwovens/what-are nonwovens
  • Friend M A and Kohn J P. Fundamentals of occupational safety and health. Rowman & Littlefield, 2018.
  • Benjamin O. Alli. Fundamental Principles of Occupational Health and Safety, 2008.
  • Bilir N. İş Sağlığı ve Güvenliği, Güneş Tıp Kitabevi, 2016.
  • Nassiri P, Monazam M, Dehaghi B F, Abadi L I G, Zakerian S A and Azam K. The Effect of Noise on Human Performance: A Clinical Trial. Int J Occup Environ Med., 2013; 4(2): 87-95.
  • Çevresel Gürültünün Değerlendirilmesi ve Yönetimi Yönetmeliği, 2010. https://www.mevzuat.gov.tr/mevzuat?MevzuatNo=14012&MevzuatTur=7&MevzuatTertip=5
  • Çalışanların Gürültü ile İlgili Risklerden Korunmalarına Dair Yönetmelik, 2013. https://www.resmigazete.gov.tr/eskiler/2013/07/20130728-11.htm
  • Jariwala H J, Syed H S, Pandya M J and Gajera, Y M. Noise Pollution & Human Health: A Review. Indoor and Built Environment, 2017; 1-4.
  • Jhanwar D. Noise Pollution: A Review. Journal of Environment Pollution and Human Health, 2016; 4(3): 72-77.
  • Hsu T, Ryherd E, Waye K P and Ackerman J. Noise pollution in hospitals: impact on patients. JCOM, 2012; 19(7): 301-9.
  • Toppila E, Pyykkö I and Pääkkönen R. Evaluation of the increased accident risk from workplace noise. International journal of occupational safety and ergonomics, 2009; 15(2):155-162.
  • Canadian Centre for Occupational Health and Safety (CCOHS), Noise - Measurement of Workplace Noise, https://www.ccohs.ca/oshanswers/phys_agents/noise_measurement.html
  • Tekstil Sektöründe İş Sağlığı Gözetimi Rehberi, İş Sağlığı ve Güvenliği Genel Müdürlüğü.
  • Ece F, Sümer SK, Sabancı A. Tekstil fabrikalarinda gürültü düzeyi ve etkileri. Mesleki Sağlık ve Güvenlik Dergisi (MSG), 2015; 4(15): 30-39.
  • Şahin, E. Gürültü kontrol yöntemleri-bir uygulama. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi, 2003; 18(4): 67-80.
  • Hansen C H and Bies D A. Engineering noise control. London: Spon, 1995.
  • Uğurlu, F. Tekstil Sektöründe İş Sağlığı ve Güvenliği, ÇSGB, 2011.
  • Meslek Hastalıkları ve İş ile İlgili Hastalıklar Tanı Rehberi.
  • Çalışma Yaşamında Sağlık Gözetimi Rehberi, 2012.

ASSESSMENT OF NOISE PROBLEM IN NONWOVEN INDUSTRY

Year 2021, , 58 - 65, 30.06.2021
https://doi.org/10.47137/uujes.934014

Abstract

The textile industry is a constantly developing sector from the past to the present. Since the machines used in textile production are large machines and working at high speeds, they emit significant noise. Beside the health problems related to hearing, employees exposed to noise also suffer from problems such as insomnia, distractibility and nervousness. A high level of noise in the environment, especially in jobs that require intense attention, moreover leads to work accident. Therefore, noise control in textile sector is very crucial. There are several control methods for reducing noise in workplaces. These methods are noise control at the source, noise control in the path and noise control at the receiver. Engineering methods that control the noise at the source are about making changes in machinery and processes. In this study general knowledge about noise is given. The noise problem in the nonwoven sector and the measures that can be taken against noise is examined.

References

  • Kumar RS. Textiles for industrial applications. CRC Press; 2013.
  • Kaddar TR. Future vision for development in textile science and engineering. J Textile Sci Eng, 2018; 8(381): 1-2.
  • Nefes A. Dokusuz kumaş üretimi yapan işletmelerde risklerin değerlendirilmesi. İş Sağlığı ve Güvenliği Uzmanlık Tezi. 2016.
  • Thangadurai K, Thilagavathi G and Bhattacharyya A. Characterization of needle-punched nonwoven fabrics for industrial air filter application. The Journal of the Textile Institute, 2014; 105(12): 1319-1326.
  • Payen J, Vroman P, Lewandowski M, Perwuelz A, Calle-Chazelet S and Thomas D. Influence of fiber diameter, fiber combinations and solid volume fraction on air filtration properties in nonwovens. Textile Research Journal, 2012; 82(19): 1948-1959.
  • Shahani F, Soltani P and Zarrebini M. The analysis of acoustic characteristics and sound absorption coefficient of needle punched nonwoven fabrics. Journal of Engineered Fibers and Fabrics, 2014; 9(2): 84-92.
  • Belachew A and Berhane Y. noise-induced hearing loss among textile workers. The Ethiopian Journal of Health Development, 1999; 13(2).
  • Talukdar M K. Noise pollution and its control in textile industry. Indian Journal of Fibre & Textile Research, 2001; 26: 44-49.
  • Jayawardana T S S, Perera M Y A and Wijesena G H D. Analysis and control of noise in a textile factory. International Journal of Scientific and Research Publications, 2014; 4(12): 1-7.
  • Russell S J. Handbook of Nonwovens. Woodhead Publishing Limited and CRC Press, England, 2007.
  • Allen Jr H C. Preparing cotton, web forming and bonding methods for cotton nonwovens. In Proceedings, 1998.
  • Albrecht W, Fuchs H and Kittelmann W. Nonwoven fabrics: raw materials, manufacture, applications, characteristics, testing processes. John Wiley & Sons, 2006.
  • http://www.edana.org/discover-nonwovens/what-are nonwovens
  • Friend M A and Kohn J P. Fundamentals of occupational safety and health. Rowman & Littlefield, 2018.
  • Benjamin O. Alli. Fundamental Principles of Occupational Health and Safety, 2008.
  • Bilir N. İş Sağlığı ve Güvenliği, Güneş Tıp Kitabevi, 2016.
  • Nassiri P, Monazam M, Dehaghi B F, Abadi L I G, Zakerian S A and Azam K. The Effect of Noise on Human Performance: A Clinical Trial. Int J Occup Environ Med., 2013; 4(2): 87-95.
  • Çevresel Gürültünün Değerlendirilmesi ve Yönetimi Yönetmeliği, 2010. https://www.mevzuat.gov.tr/mevzuat?MevzuatNo=14012&MevzuatTur=7&MevzuatTertip=5
  • Çalışanların Gürültü ile İlgili Risklerden Korunmalarına Dair Yönetmelik, 2013. https://www.resmigazete.gov.tr/eskiler/2013/07/20130728-11.htm
  • Jariwala H J, Syed H S, Pandya M J and Gajera, Y M. Noise Pollution & Human Health: A Review. Indoor and Built Environment, 2017; 1-4.
  • Jhanwar D. Noise Pollution: A Review. Journal of Environment Pollution and Human Health, 2016; 4(3): 72-77.
  • Hsu T, Ryherd E, Waye K P and Ackerman J. Noise pollution in hospitals: impact on patients. JCOM, 2012; 19(7): 301-9.
  • Toppila E, Pyykkö I and Pääkkönen R. Evaluation of the increased accident risk from workplace noise. International journal of occupational safety and ergonomics, 2009; 15(2):155-162.
  • Canadian Centre for Occupational Health and Safety (CCOHS), Noise - Measurement of Workplace Noise, https://www.ccohs.ca/oshanswers/phys_agents/noise_measurement.html
  • Tekstil Sektöründe İş Sağlığı Gözetimi Rehberi, İş Sağlığı ve Güvenliği Genel Müdürlüğü.
  • Ece F, Sümer SK, Sabancı A. Tekstil fabrikalarinda gürültü düzeyi ve etkileri. Mesleki Sağlık ve Güvenlik Dergisi (MSG), 2015; 4(15): 30-39.
  • Şahin, E. Gürültü kontrol yöntemleri-bir uygulama. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi, 2003; 18(4): 67-80.
  • Hansen C H and Bies D A. Engineering noise control. London: Spon, 1995.
  • Uğurlu, F. Tekstil Sektöründe İş Sağlığı ve Güvenliği, ÇSGB, 2011.
  • Meslek Hastalıkları ve İş ile İlgili Hastalıklar Tanı Rehberi.
  • Çalışma Yaşamında Sağlık Gözetimi Rehberi, 2012.
There are 31 citations in total.

Details

Primary Language English
Journal Section Articles
Authors

Aysel Buzak This is me 0000-0003-4453-8331

Gizem Celep 0000-0001-9618-6708

Publication Date June 30, 2021
Submission Date May 6, 2021
Acceptance Date May 19, 2021
Published in Issue Year 2021

Cite

APA Buzak, A., & Celep, G. (2021). ASSESSMENT OF NOISE PROBLEM IN NONWOVEN INDUSTRY. Usak University Journal of Engineering Sciences, 4(1), 58-65. https://doi.org/10.47137/uujes.934014
AMA Buzak A, Celep G. ASSESSMENT OF NOISE PROBLEM IN NONWOVEN INDUSTRY. UUJES. June 2021;4(1):58-65. doi:10.47137/uujes.934014
Chicago Buzak, Aysel, and Gizem Celep. “ASSESSMENT OF NOISE PROBLEM IN NONWOVEN INDUSTRY”. Usak University Journal of Engineering Sciences 4, no. 1 (June 2021): 58-65. https://doi.org/10.47137/uujes.934014.
EndNote Buzak A, Celep G (June 1, 2021) ASSESSMENT OF NOISE PROBLEM IN NONWOVEN INDUSTRY. Usak University Journal of Engineering Sciences 4 1 58–65.
IEEE A. Buzak and G. Celep, “ASSESSMENT OF NOISE PROBLEM IN NONWOVEN INDUSTRY”, UUJES, vol. 4, no. 1, pp. 58–65, 2021, doi: 10.47137/uujes.934014.
ISNAD Buzak, Aysel - Celep, Gizem. “ASSESSMENT OF NOISE PROBLEM IN NONWOVEN INDUSTRY”. Usak University Journal of Engineering Sciences 4/1 (June 2021), 58-65. https://doi.org/10.47137/uujes.934014.
JAMA Buzak A, Celep G. ASSESSMENT OF NOISE PROBLEM IN NONWOVEN INDUSTRY. UUJES. 2021;4:58–65.
MLA Buzak, Aysel and Gizem Celep. “ASSESSMENT OF NOISE PROBLEM IN NONWOVEN INDUSTRY”. Usak University Journal of Engineering Sciences, vol. 4, no. 1, 2021, pp. 58-65, doi:10.47137/uujes.934014.
Vancouver Buzak A, Celep G. ASSESSMENT OF NOISE PROBLEM IN NONWOVEN INDUSTRY. UUJES. 2021;4(1):58-65.

An international scientific e-journal published by the University of Usak