A Correlation Analysis of Cooling-Induced Temperature Changes

Author:

Yang Tiebao1,Hu Henry1,Chen Xiang1,Chu Yeou-li2,Cheng Patrick2

Affiliation:

1. Department of Mechanical, Automotive & Materials Engineering, University of Windsor, Windsor, ON, N9B 3P4, Canada

2. Department of Research and Development, Ryobi Die Casting (USA) Inc., Shelbyville, IN 46176-9720

Abstract

Proper temperature control is essential for producing superior quality components and yielding high production rates in high temperature manufacturing processes. Due to the closure of machine tools such as casting dies during production, it is usually very difficult to monitor their local surface temperatures without destructively inserting thermal sensors into them. However, the measurement of cooling water temperature at the coolant outlet is relatively unproblematic. This work demonstrates that there is a correlation between these two temperatures. As an example, the effect of the local surface temperature of a casting die on the cooling water outlet temperature is analyzed from a laboratory die casting process simulator. Based on the system identification theory, a control-oriented linear time-invariant model has been developed, which correlates the local die temperature to the cooling water outlet temperature. The model enables the prediction of the local die temperature with the measurements of the cooling water temperature. Thus, it provides an alternative approach other than the destructive sensing method to acquire the local die temperatures, and the model could be applied to design a real-time temperature control system for die cooling process.

Publisher

ASME International

Subject

Industrial and Manufacturing Engineering,Computer Science Applications,Mechanical Engineering,Control and Systems Engineering

Reference21 articles.

1. Effect of Cooling Water Flow Rates on Local Temperatures and Heat Transfer of Casting Dies;Hu;J. Mater. Process. Technol.

2. An Experimental and Numerical Investigation Into the Thermal Behavior of the Pressure Die Casting Process;Bounds;ASME J. Manuf. Sci. Eng.

3. Experimental Investigation Into the Thermal Behavior of Copper-Alloyed Dies in Pressure Die Casting;Clark;ASME J. Manuf. Sci. Eng.

4. A Die Temperature Cycle Time Controller;Booth

5. Automatic Control Die Temperature in Zinc Die Casting;Larkin

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