2020
DOI: 10.1177/0954405420969347
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Applying experimental micro-tool wear measurement techniques to industrial environments

Abstract: Productivity in micro-milling is hindered by premature fracture of tools and difficulty predicting wear. This work builds upon previous investigations into tool wear mechanisms and coatings for micro-mills.The technology readiness level of this work exceeds previous studies by investigating the micro-mills for practical applications and comparing this data. 0.5 mm micro end mills are tested with different coatings on CuZn38, and wear curves produced both in the case of simple straight slot testing and milling … Show more

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Cited by 8 publications
(3 citation statements)
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References 49 publications
(69 reference statements)
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“…Although some previous researchers have used chip thickn and/or chip area calculations using imaging software for burr area measurements, the c rent study focused on directly measuring the burr height and burr width using an Oly pus 3D digital microscope, which was then used to determine the novel burr length. With regards to tool wear in micro-milling, ISO 8688 standards were followed, wh encompass different forms of tool wear, including flank wear, chipping, face wear, outs edge wear, and catastrophic failure [39]. Flank wear is particularly significant, as it direc With regards to tool wear in micro-milling, ISO 8688 standards were followed, which encompass different forms of tool wear, including flank wear, chipping, face wear, outside edge wear, and catastrophic failure [39].…”
Section: Response Measurementmentioning
confidence: 99%
See 1 more Smart Citation
“…Although some previous researchers have used chip thickn and/or chip area calculations using imaging software for burr area measurements, the c rent study focused on directly measuring the burr height and burr width using an Oly pus 3D digital microscope, which was then used to determine the novel burr length. With regards to tool wear in micro-milling, ISO 8688 standards were followed, wh encompass different forms of tool wear, including flank wear, chipping, face wear, outs edge wear, and catastrophic failure [39]. Flank wear is particularly significant, as it direc With regards to tool wear in micro-milling, ISO 8688 standards were followed, which encompass different forms of tool wear, including flank wear, chipping, face wear, outside edge wear, and catastrophic failure [39].…”
Section: Response Measurementmentioning
confidence: 99%
“…With regards to tool wear in micro-milling, ISO 8688 standards were followed, wh encompass different forms of tool wear, including flank wear, chipping, face wear, outs edge wear, and catastrophic failure [39]. Flank wear is particularly significant, as it direc With regards to tool wear in micro-milling, ISO 8688 standards were followed, which encompass different forms of tool wear, including flank wear, chipping, face wear, outside edge wear, and catastrophic failure [39]. Flank wear is particularly significant, as it directly impacts product quality by increasing surface roughness.…”
Section: Response Measurementmentioning
confidence: 99%
“…Similarly, long production times together with high wear of the tools are the restricting factors for micromachining. 7 Although direct 3D printing enables the production of complicated textures, the lead times are very high and the selection of materials is limited. 3 Photochemical machining is a costly process in which several process steps and equipment parts are required.…”
Section: Introductionmentioning
confidence: 99%