In the modern manufacturing industries with the implementation of advanced science and technology, CNC machine had helped in the reducing of cost and increasing the productivity in order to gain maximum profitability in a highly competitive designing and manufacturing industry. It has paramount importance till today. Due to the market needs, it is necessary to develop a temperature monitoring that has fast response, low cost and high reliability in monitoring the CNC machine based on Message Queuing Telemetry Transport (MQTT) with the concept of Internet of Things to avoid machine accidents causes by overheating in machining. This system consists of Temperature and Humidity sensor to keep track of current status of temperature in CNC machining controlled by the Raspberry Pi B+ system with screen display on Monitor and Android Smartphone. This system was targeted to assist users in monitoring the CNC machines. Since the emergence of Internet of Things, a lot of effort and research had been conducted by the researcher resulted in the monitoring of CNC machine. In order to ensure a long lasting of electrical component in machining, the monitoring of overheating is a measure to provide safety and health in industrial which will lead to the ultimate goal of monitoring machine to realize the concept of “Internet of Things” and towards Industry 4.0. This research had proposed an idea to develop a temperature monitoring to be communicated with smartphone in order to monitor and control. It was developed by MQTT to ensure the communication of transmission of data between sensor and Android smartphone. With the function of smartphone, it allows the ease of portability and receiving data from sensor using MQTT. As the result from the research, temperature monitoring helps to improve the quality of machining in CNC machine, increase productivity, saves times, avoid machine from accidents and enabling of monitoring machine.
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30 July 2019
5TH INTERNATIONAL CONFERENCE ON GREEN DESIGN AND MANUFACTURE (IConGDM 2019)
29–30 April 2019
Jawa Barat, Indonesia
Research Article|
July 30 2019
Development of temperature monitoring towards Industry 4.0 Available to Purchase
T. Sharmilah;
T. Sharmilah
a)
1
Department of Mechanical Engineering, Faculty of Mechanical and Manufacturing Engineering, Universiti Tun Hussein Onn Malaysia (UTHM)
, 86400, Batu Pahat, Johor, Malaysia
a)Corresponding author: [email protected]
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M. Yahya;
M. Yahya
b)
2
Department of Mechanical Engineering, Politeknik Sultan Abdul Halim Mu’adzam Shah
, 06000 Jitra Kedah, Malaysia
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K. M. Fuzi;
K. M. Fuzi
c)
2
Department of Mechanical Engineering, Politeknik Sultan Abdul Halim Mu’adzam Shah
, 06000 Jitra Kedah, Malaysia
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M. Pauzi;
M. Pauzi
2
Department of Mechanical Engineering, Politeknik Sultan Abdul Halim Mu’adzam Shah
, 06000 Jitra Kedah, Malaysia
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Z. Shirlynda;
Z. Shirlynda
3
Department of General Study, Politeknik Sultan Abdul Halim Mu’adzam Shah
, 06000 Jitra Kedah, Malaysia
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N. A. Faris
N. A. Faris
2
Department of Mechanical Engineering, Politeknik Sultan Abdul Halim Mu’adzam Shah
, 06000 Jitra Kedah, Malaysia
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T. Sharmilah
1,a)
M. Yahya
2,b)
K. M. Fuzi
2,c)
M. Pauzi
2
Z. Shirlynda
3
N. A. Faris
2
1
Department of Mechanical Engineering, Faculty of Mechanical and Manufacturing Engineering, Universiti Tun Hussein Onn Malaysia (UTHM)
, 86400, Batu Pahat, Johor, Malaysia
2
Department of Mechanical Engineering, Politeknik Sultan Abdul Halim Mu’adzam Shah
, 06000 Jitra Kedah, Malaysia
3
Department of General Study, Politeknik Sultan Abdul Halim Mu’adzam Shah
, 06000 Jitra Kedah, Malaysia
AIP Conf. Proc. 2129, 020034 (2019)
Citation
T. Sharmilah, M. Yahya, K. M. Fuzi, M. Pauzi, Z. Shirlynda, N. A. Faris; Development of temperature monitoring towards Industry 4.0. AIP Conf. Proc. 30 July 2019; 2129 (1): 020034. https://doi.org/10.1063/1.5118042
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