Assessment of the transverse roughness of the thin-walled cooler for the robot control system made using CAM programming

The article deals with design and design of a thin-walled heat sink for the robot control system, the measurement of the transverse roughness of the touch surfaces and the programming procedure in Autodesk Inventor 2019 software. In this software, a design of the 3D model of the heat sink generated...

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Main Authors: Tirpak Peter, Michalik Peter, Hatala Michal, Petruš Michal
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:MATEC Web of Conferences
Online Access:https://www.matec-conferences.org/articles/matecconf/pdf/2019/12/matecconf_vvapol2018_01013.pdf
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spelling doaj-f06c6c26e7a34a258dda75670ff90c2d2021-02-02T00:46:29ZengEDP SciencesMATEC Web of Conferences2261-236X2019-01-012630101310.1051/matecconf/201926301013matecconf_vvapol2018_01013Assessment of the transverse roughness of the thin-walled cooler for the robot control system made using CAM programmingTirpak PeterMichalik PeterHatala MichalPetruš MichalThe article deals with design and design of a thin-walled heat sink for the robot control system, the measurement of the transverse roughness of the touch surfaces and the programming procedure in Autodesk Inventor 2019 software. In this software, a design of the 3D model of the heat sink generated based on power supply and NC code generation for the Fanuc control system. The production it-self carried out on the CNC Vertical Machining Center Pinnacle 2100 with this control system. The longitudinal surface roughness was measured with a Mi-tutoyo SJ 400 dredger and the measurement result was the maximum Ra = 0.69 μm and Rz = 4.1 μμm.https://www.matec-conferences.org/articles/matecconf/pdf/2019/12/matecconf_vvapol2018_01013.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Tirpak Peter
Michalik Peter
Hatala Michal
Petruš Michal
spellingShingle Tirpak Peter
Michalik Peter
Hatala Michal
Petruš Michal
Assessment of the transverse roughness of the thin-walled cooler for the robot control system made using CAM programming
MATEC Web of Conferences
author_facet Tirpak Peter
Michalik Peter
Hatala Michal
Petruš Michal
author_sort Tirpak Peter
title Assessment of the transverse roughness of the thin-walled cooler for the robot control system made using CAM programming
title_short Assessment of the transverse roughness of the thin-walled cooler for the robot control system made using CAM programming
title_full Assessment of the transverse roughness of the thin-walled cooler for the robot control system made using CAM programming
title_fullStr Assessment of the transverse roughness of the thin-walled cooler for the robot control system made using CAM programming
title_full_unstemmed Assessment of the transverse roughness of the thin-walled cooler for the robot control system made using CAM programming
title_sort assessment of the transverse roughness of the thin-walled cooler for the robot control system made using cam programming
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2019-01-01
description The article deals with design and design of a thin-walled heat sink for the robot control system, the measurement of the transverse roughness of the touch surfaces and the programming procedure in Autodesk Inventor 2019 software. In this software, a design of the 3D model of the heat sink generated based on power supply and NC code generation for the Fanuc control system. The production it-self carried out on the CNC Vertical Machining Center Pinnacle 2100 with this control system. The longitudinal surface roughness was measured with a Mi-tutoyo SJ 400 dredger and the measurement result was the maximum Ra = 0.69 μm and Rz = 4.1 μμm.
url https://www.matec-conferences.org/articles/matecconf/pdf/2019/12/matecconf_vvapol2018_01013.pdf
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AT hatalamichal assessmentofthetransverseroughnessofthethinwalledcoolerfortherobotcontrolsystemmadeusingcamprogramming
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