A PCB 130D20 microphone is kept in a stand and facing towards the tool tip to capture the emitted sound. The microphone is connected to the computer through a specially designed signal conditioner. GoldWave software is used to record the captured sound with sampling frequency set to 44100Hz. A series of machining experiments were conducted on a Turning machine(XLTURN from MTAB) with Carbide Insert and aluminium work piece of 38mm diameter. Throughout the experiment a constant feed rate set at 0.5 mm/rotation was uniformly maintained.

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[1] EMERSON RAJA JOSEPH, "Tool Wear Emitted Sound Data", IEEE Dataport, 2024. [Online]. Available: http://dx.doi.org/10.21227/7c09-c224. Accessed: Jun. 20, 2024.
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doi = {10.21227/7c09-c224},
url = {http://dx.doi.org/10.21227/7c09-c224},
author = {EMERSON RAJA JOSEPH },
publisher = {IEEE Dataport},
title = {Tool Wear Emitted Sound Data},
year = {2024} }
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T1 - Tool Wear Emitted Sound Data
AU - EMERSON RAJA JOSEPH
PY - 2024
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EMERSON RAJA JOSEPH. (2024). Tool Wear Emitted Sound Data. IEEE Dataport. http://dx.doi.org/10.21227/7c09-c224
EMERSON RAJA JOSEPH, 2024. Tool Wear Emitted Sound Data. Available at: http://dx.doi.org/10.21227/7c09-c224.
EMERSON RAJA JOSEPH. (2024). "Tool Wear Emitted Sound Data." Web.
1. EMERSON RAJA JOSEPH. Tool Wear Emitted Sound Data [Internet]. IEEE Dataport; 2024. Available from : http://dx.doi.org/10.21227/7c09-c224
EMERSON RAJA JOSEPH. "Tool Wear Emitted Sound Data." doi: 10.21227/7c09-c224