Araştırma Makalesi

Performance and deformation behavior of a master jig on circular saw machine using finite element method

Cilt: 8 Sayı: 1 30 Haziran 2025
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Performance and deformation behavior of a master jig on circular saw machine using finite element method

Öz

This study investigates the performance, stress distribution, deformation and potential failure modes of a newly developed Master Jig (MJ) designed for circular saw machine operations. The MJ comprises three components: the master jig body (MJB), the master jig accessories (MJA) and the master jig guide (MJG). The jig was modelled and simulated under applied static loads of 520 N and 600 N using SOLIDWORKS software. The MJ performance was evaluated, results were recorded, and a deformation graph was presented and shape displayed in true and defined scales of 0.135238 and 0.036047, respectively. The analysis shows that, maximum directional deformations at 520 N and 600 N were 8.463 x 102 mm and 3.197 x 103 mm respectively, elastic strains at 6.540 x 10 and 1.433 x 10, von mises stresses at 2.580 x 106 MPa and 3.930 x 107 MPa respectively, the Yield Strengths at 2.000 x 107 MPa and 3.930 x 107 MPa respectively, and the factor of safety at 31 and 11 respectively. The study underscores the potential of finite element modelling in the predictive design of woodworking jigs.

Anahtar Kelimeler

Destekleyen Kurum

University of Cross River State, Calabar Nigeria

Proje Numarası

(TETF/DR&D/CE/UNI/CALABAR/IBR/2024/batch 8

Etik Beyan

Not applicable

Teşekkür

We appreciate the editorial board and the Chief editor's invitation to present our work for consideration. We hope it meets your journal's high standards. Thank you. Asibong Icha

Kaynakça

  1. Autengruber, M., Lukacevic, M., Wenighofer G., Raimund Mauritz, R., & Füssl, J. (2021). Finite-element-based concept to predict stiffness, strength, and failure of wood composite I-joist beams under various loads and climatic conditions, Engineering Structures, 245 112908, DOI: 10.1016/j.engstruct.2021.112908
  2. Blomqvist, L., Ormarsson, S. & Ziethén, R. (2023). Stress distribution in veneers under lamination and simultaneously bending: an experimental and numerical investigation, Wood Material Science & Engineering, 18:3, 995-1002, DOI:10.1080/17480272.2022.2099762
  3. Brischke, C., Alfredsen, G., Humar, M., Conti, E., Cookson, L., Emmerich, L., & Suttie, E. (2021). Modelling the material resistance of wood—part 3: relative resistance in above-and in-ground situations—results of a global survey. Forests, 12(5), 590, DOI: 10.3390/f12070959
  4. DeCristoforo, R.J. (1988). The Complete Book of Stationary Power Tool Techniques. Sterling Publishing Co., Inc. Two Park Avenue, New York, N. Y. 388p
  5. Falk, R. H., & Itani, R. Y. (1989). Finite element modeling of wood diaphragms, Journal of Structural Engineering, 115(3), 543-559, https://www.fpl.fs.usda.gov/documnts
  6. Falko, F. Ehrenstein, J. Höltgen, C. Blondrath, A. Schäper, L. Göppert, A. & Schmitt, R. (2023). Jigs and fixtures in production: a systematic literature review. Journal of Manufacturing Systems, 72, 373–405, DOI: 10.1016/j.jmsy.2023.10.006
  7. Frontini F. (2023) A novel approach for modelling a historic timber roof, International Wood Products Journal, 14:1, 21-33, DOI: 10.1080/20426445.2023.2171895 Fleming, S. (2020). Woodworking and Whittling for Kids, Teens and Parents: A Beginner’s Guide with 51 DIY Projects for Digital Detox and Family Bonding. Stephen Fleming.
  8. Hernández, R.E., Passarini, L. & Koubaa, A. (2014). Effects of temperature and moisture content on selected wood mechanical properties involved in the chipping process, Wood Science and Technology, 48, 1281-1301.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Malzeme Mühendisliği (Diğer), Ahşap Esaslı Kompozitler, Ahşap Fiziği ve Mekaniği, Ahşap Yapılar ve Konstrüksiyonları

Bölüm

Araştırma Makalesi

Erken Görünüm Tarihi

27 Haziran 2025

Yayımlanma Tarihi

30 Haziran 2025

Gönderilme Tarihi

23 Mart 2025

Kabul Tarihi

22 Haziran 2025

Yayımlandığı Sayı

Yıl 2025 Cilt: 8 Sayı: 1

Kaynak Göster

APA
Icha, A., & Ogbeche Odey, S. (2025). Performance and deformation behavior of a master jig on circular saw machine using finite element method. Mobilya ve Ahşap Malzeme Araştırmaları Dergisi, 8(1), 143-155. https://doi.org/10.33725/mamad.1663809
AMA
1.Icha A, Ogbeche Odey S. Performance and deformation behavior of a master jig on circular saw machine using finite element method. MAMAD. 2025;8(1):143-155. doi:10.33725/mamad.1663809
Chicago
Icha, Asibong, ve Simon Ogbeche Odey. 2025. “Performance and deformation behavior of a master jig on circular saw machine using finite element method”. Mobilya ve Ahşap Malzeme Araştırmaları Dergisi 8 (1): 143-55. https://doi.org/10.33725/mamad.1663809.
EndNote
Icha A, Ogbeche Odey S (01 Haziran 2025) Performance and deformation behavior of a master jig on circular saw machine using finite element method. Mobilya ve Ahşap Malzeme Araştırmaları Dergisi 8 1 143–155.
IEEE
[1]A. Icha ve S. Ogbeche Odey, “Performance and deformation behavior of a master jig on circular saw machine using finite element method”, MAMAD, c. 8, sy 1, ss. 143–155, Haz. 2025, doi: 10.33725/mamad.1663809.
ISNAD
Icha, Asibong - Ogbeche Odey, Simon. “Performance and deformation behavior of a master jig on circular saw machine using finite element method”. Mobilya ve Ahşap Malzeme Araştırmaları Dergisi 8/1 (01 Haziran 2025): 143-155. https://doi.org/10.33725/mamad.1663809.
JAMA
1.Icha A, Ogbeche Odey S. Performance and deformation behavior of a master jig on circular saw machine using finite element method. MAMAD. 2025;8:143–155.
MLA
Icha, Asibong, ve Simon Ogbeche Odey. “Performance and deformation behavior of a master jig on circular saw machine using finite element method”. Mobilya ve Ahşap Malzeme Araştırmaları Dergisi, c. 8, sy 1, Haziran 2025, ss. 143-55, doi:10.33725/mamad.1663809.
Vancouver
1.Asibong Icha, Simon Ogbeche Odey. Performance and deformation behavior of a master jig on circular saw machine using finite element method. MAMAD. 01 Haziran 2025;8(1):143-55. doi:10.33725/mamad.1663809

 

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