Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/104149
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Title: Preliminary investigation on ultra-precision diamond turning of titanium alloys using thermoelectric cooler fixture
Authors: Yip, WS 
To, S 
Issue Date: Oct-2020
Source: Journal of manufacturing processes, Oct. 2020, v. 58, p. 187-192
Abstract: The low thermal conductivity of titanium alloys causes an accumulation of high cutting heat at the tool/workpiece interface and thus deteriorates surface integrity of the machined surface in ultra-precision machining (UPM). In response of this underlying source causing the poor machinability of the materials in UPM, in this study, a novel fixture composed of thermoelectric cooler (TEC) is firstly developed and applied into single point diamond turning (SPDT) of titanium alloys, aiming to dissipate the cutting heat in the machining process. The TEC contacted with workpiece during the whole turning process and caused a dissipation of cutting heat from the workpiece. By using the fixture with TEC device, the cutting force variation and surface roughness involved in SPDT were reduced. This study presents the preliminary results of application of TEC fixture on UPM of titanium alloys and shows the feasibility of the use of TEC device in UPM area, suggesting a new approach to resolve the problematic high cutting heat of titanium alloys in UPM.
Keywords: Cutting heat
Machinability
Single point diamond turning
Thermoelectric cooler
Titanium alloys
Publisher: Elsevier Ltd
Journal: Journal of manufacturing processes 
ISSN: 1526-6125
EISSN: 2212-4616
DOI: 10.1016/j.jmapro.2020.08.020
Rights: © 2020 The Society of Manufacturing Engineers. Published by Elsevier Ltd. All rights reserved.
© 2020. This manuscript version is made available under the CC-BY-NC-ND 4.0 license https://creativecommons.org/licenses/by-nc-nd/4.0/
The following publication Yip, W. S., & To, S. (2020b). Preliminary investigation on ultra-precision diamond turning of titanium alloys using thermoelectric cooler fixture. Journal of Manufacturing Processes, 58, 187–192 is available at https://doi.org/10.1016/j.jmapro.2020.08.020.
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