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Influence of top-surface condition and process parameters on cutting forces and surface integrity in CFRP milling

Bukor, Levente and Rao, Fu and Geier, Norbert (2026) Influence of top-surface condition and process parameters on cutting forces and surface integrity in CFRP milling. THE INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 145. pp. 8907-8924. ISSN 0268-3768

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Abstract

The machinability of unidirectional carbon-fibre reinforced polymer (UD-CFRP) composites is strongly dependent on fibre architecture, cutting parameters and the initial surface condition; however, their combined effects remain insufficiently quantified. This study systematically evaluates the influence of fibre orientation (0°, 45°, 90°, 135°), feed (0.05 and 0.15 mm), cutting depth (1 and 2 mm) and top-surface quality (pre-machined by machining vs. abrasive water jet machining (AWJM)) on cutting forces and surface integrity during dry face milling. UD-CFRP composites were up-milled using a Ø12 mm Alcrona-coated two-flute carbide endmill. Three-component cutting force was recorded with a Kistler 9257B dynamometer and processed using a Butterworth low-pass filter. Surface roughness was measured in accordance with ISO 4288:1996, and surface morphology was assessed by optical and scanning electron microscopy. ANOVA results identify cutting depth and feed as the primary drivers of resultant cutting force, while the initial top-surface condition was also found to be significant. Fibre orientation did not significantly affect force in the pooled dataset, but became significant for pre-machined specimens, indicating that consistent allowance is required to reveal orientation effects. Surface roughness was strongly dependent on fibre orientation — optimal finishes were observed at 0° and 90°, whereas 135° produced the poorest results. SEM analysis revealed extensive matrix smearing that can obscure subsurface defects (fibre pull-out, microcracks), potentially biasing profilometric measurements. The results support the need for pre-machining of AWJ-cut CFRP specimens to improve repeatability and consistency, and recommend that fibre orientation and subsurface inspection be considered when specifying machining strategies for CFRPs.

Item Type: Article
Subjects: T Technology / alkalmazott, műszaki tudományok > TJ Mechanical engineering and machinery / gépészmérnöki tudományok
Depositing User: Dr Norbert Geier
Date Deposited: 25 Sep 2026 08:47
Last Modified: 25 Sep 2026 08:47
URI: https://real.mtak.hu/id/eprint/247646

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