Design selection of In-UVAT using MATLAB fuzzy logic toolbox

The design of tool holder was a crucial step to make sure the tool holder is enough to handle all forces on turning process. Because of the direct experimental approach is expensive, a few design of innovative ultrasonic vibration assisted tuning (In-UVAT) has proposed. This design has analyzed usin...

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Main Authors: Rachmat, Haris, Mulyana, Tatang, Hasan, Sulaiman, Ibrahim, Mohd Rasidi
Format: Book Section
Published: Springer International Publishing 2017
Subjects:
Online Access:DOI:10.1007/978-3-319-51281-5_54
DOI:10.1007/978-3-319-51281-5_54
id uthm-9601
recordtype eprints
spelling uthm-96012018-08-13T03:34:28Z Design selection of In-UVAT using MATLAB fuzzy logic toolbox Rachmat, Haris Mulyana, Tatang Hasan, Sulaiman Ibrahim, Mohd Rasidi QA76 Computer software The design of tool holder was a crucial step to make sure the tool holder is enough to handle all forces on turning process. Because of the direct experimental approach is expensive, a few design of innovative ultrasonic vibration assisted tuning (In-UVAT) has proposed. This design has analyzed using finite element simulation to predict feasibility of tool holder displacement and effective stress. SS201 and AISI 1045 materials were used with sharp and ramp corners flexure hinges on design. To decide which one the design is selected was used MATLAB Fuzzy Logic Toolbox. The result shows that AISI 1045 material and which has ramp corner flexure hinge was the best choice to be produced. It has the Eff. Stress Static equal 3, Displacement Static equal 17.5, Eff. Stress Dynamic equal 3, Displacement Dynamic equal 17.5 and Durability Value is 86.4. Springer International Publishing 2017 Book Section PeerReviewed DOI:10.1007/978-3-319-51281-5_54 Rachmat, Haris and Mulyana, Tatang and Hasan, Sulaiman and Ibrahim, Mohd Rasidi (2017) Design selection of In-UVAT using MATLAB fuzzy logic toolbox. In: Advances in Intelligent Systems and Computing. Recent Advances on Soft Computing and Data Mining, 549 . Springer International Publishing, pp. 538-545. ISBN 9783319512792 http://eprints.uthm.edu.my/9601/
repository_type Digital Repository
institution_category Local University
institution Universiti Tun Hussein Onn Malaysia
building UTHM Institutional Repository
collection Online Access
topic QA76 Computer software
spellingShingle QA76 Computer software
Rachmat, Haris
Mulyana, Tatang
Hasan, Sulaiman
Ibrahim, Mohd Rasidi
Design selection of In-UVAT using MATLAB fuzzy logic toolbox
description The design of tool holder was a crucial step to make sure the tool holder is enough to handle all forces on turning process. Because of the direct experimental approach is expensive, a few design of innovative ultrasonic vibration assisted tuning (In-UVAT) has proposed. This design has analyzed using finite element simulation to predict feasibility of tool holder displacement and effective stress. SS201 and AISI 1045 materials were used with sharp and ramp corners flexure hinges on design. To decide which one the design is selected was used MATLAB Fuzzy Logic Toolbox. The result shows that AISI 1045 material and which has ramp corner flexure hinge was the best choice to be produced. It has the Eff. Stress Static equal 3, Displacement Static equal 17.5, Eff. Stress Dynamic equal 3, Displacement Dynamic equal 17.5 and Durability Value is 86.4.
format Book Section
author Rachmat, Haris
Mulyana, Tatang
Hasan, Sulaiman
Ibrahim, Mohd Rasidi
author_facet Rachmat, Haris
Mulyana, Tatang
Hasan, Sulaiman
Ibrahim, Mohd Rasidi
author_sort Rachmat, Haris
title Design selection of In-UVAT using MATLAB fuzzy logic toolbox
title_short Design selection of In-UVAT using MATLAB fuzzy logic toolbox
title_full Design selection of In-UVAT using MATLAB fuzzy logic toolbox
title_fullStr Design selection of In-UVAT using MATLAB fuzzy logic toolbox
title_full_unstemmed Design selection of In-UVAT using MATLAB fuzzy logic toolbox
title_sort design selection of in-uvat using matlab fuzzy logic toolbox
publisher Springer International Publishing
publishDate 2017
url DOI:10.1007/978-3-319-51281-5_54
DOI:10.1007/978-3-319-51281-5_54
first_indexed 2018-09-05T11:52:04Z
last_indexed 2018-09-05T11:52:04Z
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