Xiaoying Lai, Zhijuan Xu, Wei Zheng. Effects of four aluminum foil placement modes in testing cavitation effect of ultrasonic cleaning machine[J]. Sterile Supply, 2024,3(2):86-92.
Lai Xiaoying,Xu Zhijuan,Zheng Wei.Effects of four aluminum foil placement modes in testing cavitation effect of ultrasonic cleaning machine[J].Sterile Supply,2024,03(02):86-92.
Xiaoying Lai, Zhijuan Xu, Wei Zheng. Effects of four aluminum foil placement modes in testing cavitation effect of ultrasonic cleaning machine[J]. Sterile Supply, 2024,3(2):86-92. DOI: 10.11910/j.issn.2791-2043.2024.2.06.
Lai Xiaoying,Xu Zhijuan,Zheng Wei.Effects of four aluminum foil placement modes in testing cavitation effect of ultrasonic cleaning machine[J].Sterile Supply,2024,03(02):86-92. DOI: 10.11910/j.issn.2791-2043.2024.2.06.
Effects of four aluminum foil placement modes in testing cavitation effect of ultrasonic cleaning machine
The present study intends to compare four aluminum foil placement modes in testing the cavitation effect of an ultrasonic cleaning machine so as to provide a reference for the operation in the central sterile supply department (CSSD).
Methods
2
The experiments were divided into Group A
Group B
Group C
and Group D according to the aluminum foil placement modes recommended by different national guides. Each group conducted 20 experiments before and after the failure of the simulated ultrasonic cleaning machine. The four groups' operation time
false positive rate
and fault detection ability were compared.
Results
2
The operation time was Group A
>
Group B
>
Group C
>
Group D. The false positive rate of Group C was higher than that of Group A and Group D (all
P
<
0.008). The fault detection ability of Group A and Group C was higher than that of Group B and Group D (all
P
<
0.008).
Conclusion
2
The aluminum foil placement mode of Group A
i.e.
one aluminum foil placed along the diagonal perpendicular to the bottom of the sink
has the shortest operation time and most reliable results
which is worth popularizing in CSSD.
关键词
Keywords
references
H.J. Si , L. Jia , Y.L. Wang , et al , “ Research on the value of 5G technology combined with the Internet of Things intelligent quality traceability system in continuous quality improvement of central sterile supply department ,” China Medical Equipment , vol. 20 , pp. 118 - 122 , 2023 .
General Administration of Quality Supervision , Inspection and Quarantine of the People’s Republic of China , Standardization Administration of the People’s Republic of China . Part 1:Determination of a population of microorganisms on products : GB/T 19973.1—2015 [S ] . Beijing : 2015 .
Y.M. Duanmu , X. Liu , Y. Yang , et al , “ Effect of 3 % hydrogen peroxide as a preprocessing method on cleansing quality of surgical metal suction cannula ,” Journal of Nursing Science, vol. 35 , p. 44 , 53, 2020.
P. Zhang , D.Z. Liang , X.B. Zhao , et al , “ Observation and analysis of the cleaning efficacy of de-biofilm cleaning agent coordinated with vacuum ultrasonic cleaning machine on lumen apparatus ,” China Medical Equipment , vol. 18 , pp. 44 - 47 , 2021 .
W. X. Tan , K. W. Tan and K. L. Tan , “ Developing high intensity ultrasonic cleaning (HIUC) for post-processing additively manufactured metal components ,” Ultrasonics , vol. 126 , p. 106829 , 2022 .
B. Verhaagen and D . Fernández Rivas , “ Measuring cavitation and its cleaning effect ,” Ultrasonics Sonochemistry , vol. 29 , pp. 619 - 628 , 2016 .
Liu L , Gan J L , Zhang S H , et al . Methods for monitoring the cleaning effect of ultrasonic cleaning machine and the factors affecting it [J ] . Chinese Journal of Disinfection , 2016 , 33 ( 06 ): 603 - 604 .
J. Choi and Y. Son , “ Quantification of sonochemical and sonophysical effects in a 20 kHz probe-type sonoreactor : Enhancing sonophysical effects in heterogeneous systems with milli-sized particles,” Ultrasonics Sonochemistry, vol. 82 , p. 105888 , 2022 .
P. Cao , C. Hao , C. Ma et al. , “ Physical field simulation of the ultrasonic radiation method: an investigation of the vessel , probe position and power,” Ultrasonics Sonochemistry, vol. 76 , p. 105626 , 2021 .
L.P. Tu , “ Ultrasonic cleaning of locomotive electrical circuit,” Nanchang: East China Jiaotong University , 2020.
H. Huang , X.L. Zhou and H. Chen , Guide to the management of hospital disinfection supply center . Beijing : Research Press , 2019 : 223 - 226 .
Deutsche Gesellschaft für Supervision und Coaching e . V. Guideline for validation of manual cleaning and manual chemical disinfection of medical devices [S ] . Köln: 2013 .
National Health Service in England . Decontamination: Health Technical Memorandum 01-05: Decontamination in primary care dental practices [S ] . London : 2013 .
National Health Service Estates . HEALTH TE CHNICAL MEMORANDUM 2030 Washer disinfectors: Validation and verification [S ] . London : 1997 .
Z.H. Wang , Ultrasound cleaning technology . Wuhan : Wuhan University of Technology Press , 2019 : 41 - 53 .
L.K. Ma , Y.C. Ji , G.Q. Shen , et al , “ Experimental study on the influencing factors of ultrasonic cavitation ,” Journal of Applied Acoustics , vol. 38 , pp. 999 - 1003 , 2019 .
M.L. Shan , Y.L. Yang , Y.P. Zhu et al. , “ Optimization of clean sound field uniformity by sound source distribution and ultrasonic frequency pairs ,” Journal of Applied Acoustics , vol. 37 , pp. 475 - 480 , 2018 .
Y. W. Shi . Ultrasound Detection . Beijing : China Machine Press , 2005 : 14 .
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相关作者
Huanxi Zhang
Ying Wang
Chunzi Cao
Yan Pan
Caixia Yang
Dongling Liu
Juan Zhou
Fengjuan Yuan
相关机构
Central Sterile Supply Department I, Hunan Provincial People’ s Hospital (The First Affiliated Hospital of HunanNormal University), No. 61 Jiefang West Road, Changsha City
School of Nursing, Pingdingshan University
Infection Management Department, The Second Affiliated Hospital of Chongqing Medical University
Disinfection Supply Center, The Second Affiliated Hospital of Chongqing Medical University
Infection Management Department, Hospital of Chengdu University of Traditional Chinese Medicine