Welding Defect Analysis in Low Carbon Steel SMAW Joints Using Visual Inspection and Liquid Penetrant Test as a Basis for Welding Quality Control

Authors

  • Junil Adri Universitas Negeri Padang
  • Durain Parmanoan Universitas Negeri Padang
  • Andril Arafat Universitas Negeri Padang
  • Fadhilah Universitas Negeri Padang

DOI:

https://doi.org/10.24036/znkhtk87

Keywords:

Welding defects, SMAW, Low carbon steel, Visual inspection, Liquid penetrant test

Abstract

This research is motivated by the importance of the ability of D3 Mechanical Engineering students in evaluating the quality of welded joints, because the welding results that appear unified are not necessarily free from surface defects. This study aims to analyze the types of welding defects in low carbon steel Shielded Metal Arc Welding  joints using Visual Inspection and Liquid Penetrant Test as the basis for welding quality control in vocational learning. The study used a quantitative descriptive design based on applied laboratories involving 48 D3 Mechanical Engineering students divided into three learning sessions. Each student produced one welded joint specimen, so that the total number of specimens analyzed was 48. Data were collected through visual inspection sheets, Liquid Penetrant Test result sheets, photo documentation, and recapitulation of welding defects, then analyzed using frequency, percentage, and technical interpretation of the causes of defects. The results showed that the most dominant defects were porosity with 17 specimens (35.42%), followed by undercut with 14 specimens (29.17%), excessive spatter with 12 specimens (25.00%), and irregular bead with 11 specimens (22.92%). Liquid Penetrant Test detected 64 defect indications, higher than Visual Inspection which detected 49 defect indications. From the quality category, 24 specimens were accepted, 18 required repair, and 6 were rejected. This study concluded that the combination of Visual Inspection and Liquid Penetrant Test is effective for identifying welding defects more comprehensively and can be the basis for quality control of welding learning that is more objective, systematic, and relevant to industrial needs.

References

Akhmadi, A. N., & Qurohman, M. T. (2020). Analisa Hasil Pengelasan 2g Dan 3g Dengan Bahan Plat Besi ST 40 Ketebalan 10 mm Dan Voltase 20-35 Menggunakan Mesin Las Mig. Nozzle, 9(2), 25-30.

Alwahidi, M. N., Afrizal, B., & Samudra, S. G. (2025). Review Pengujian Pengelasan Metode Non-Destructive Test. Jurnal Mema (Jurnal Mesin dan Manufaktur), 2(1), 30-42.

Arifin, J., Purwanto, H., & Syafaa, I. (2017). Pengaruh jenis elektroda terhadap sifat mekanik hasil pengelasan smaw baja ASTM A36. Majalah Ilmiah MOMENTUM, 13(1).

Assa, V. A., & Peginusa, S. S. (2025). Praktik Kerja Baja: Switly Peginusa.

Azari, H., & Kok, R. (2022). Implementation of American Association of State Highway and Transportation Officials/American Welding Society D1. 5 Phased Array Ultrasonic Weld Inspection Programs. Transportation Research Record, 2676(10), 486-494.

Deepak, P., Kim, W., Paley, M. A., Yang, M., Carvidi, A. B., Demissie, E. G.Kinnett, B. (2021). Effect of immunosuppression on the immunogenicity of mRNA vaccines to SARS-CoV-2: a prospective cohort study. Annals of internal medicine, 174(11), 1572-1585.

Dimu, R. J., & Rerung, O. D. (2019). Analisa Pengaruh Variasi Arus Listrik Terhadap Kekerasan Material Baja Karbon Rendah Pada Daerah Lasan TIG dan MIG. Jurnal Teknik Mesin, 2(1), 12-19.

Feng, Q., Li, R., Nie, B., Liu, S., Zhao, L., & Zhang, H. (2016). Literature review: Theory and application of in-line inspection technologies for oil and gas pipeline girth weld defection. Sensors, 17(1), 50.

Gunawan, Y., Endriatno, N., & Anggara, B. H. (2017). Analisa pengaruh pengelasan listrik terhadap sifat mekanik baja karbon rendah dan baja karbon tinggi. Enthalpy-Jurnal Ilmiah Mahasiswa Teknik Mesin, 2(1), 1-12.

Hamdani, S., Azwinur, S., Adi Saputra Ismy, S., Usman, S., & Ir Jufriadi, M. (2024). STANDAR PENGELASAN KONSTRUKSI: Penerbit Andi.

Li, Y., Hu, M., & Wang, T. (2020). Visual inspection of weld surface quality. Journal of Intelligent & Fuzzy Systems, 39(4), 5075-5084.

Pambudi, N. A., & Harjanto, B. (2020). Vocational education in Indonesia: History, development, opportunities, and challenges. Children and Youth Services Review, 115, 105092.

Pennekamp, F., & Schtickzelle, N. (2013). Implementing image analysis in laboratory based experimental systems for ecology and evolution: a hands on guide. Methods in Ecology and Evolution, 4(5), 483-492.

Phillips, D. H. (2023). Welding engineering: an introduction: John Wiley & Sons.

Pogrebisky, D. M. (2016). Welding of metals: Classification, brief history, development (Vol. 2016): Insty Prints.

Pratama, Y. (2025). PERBANDINGAN KUALITAS HASIL LAS ANTARA METODE LAS SHIELDED METALARC WELDING (SMAW) DAN GAS METAL ARC WELDING (GMAW) PADA BAJA STAINLESS STEEL 304. Fakultas Teknik, Universitas Islam Sumatera Utara.

Riyanto, S. F. (2026). Welding Current Variation Determines Tensile Strength of Low Carbon Steel: Variasi Arus Las Menentukan Kekuatan Tarik Baja Karbon Rendah. Indonesian Journal of Innovation Studies, 27(1), 10.21070/ijins. v21027i21071. 22084-21010.21070/ijins. v21027i21071. 22084.

Senthil Kumar, G., Natarajan, U., & Ananthan, S. (2012). Vision inspection system for the identification and classification of defects in MIG welding joints. The International Journal of Advanced Manufacturing Technology, 61(9), 923-933.

Sitorus, M. B. H. (2017). Inspeksi NDT Hasil Pengelasan GMAW Tingkat 1 Mahasiswa Semester 6 Prodi Teknik Mesin Konsentrasi Teknik Produksi Polmed. Jurnal Teknik Mesin Mercu Buana, 6(3), 182-186.

Suherman, S., & Abdullah, I. I. (2021). TEKNIK PENGELASAN:(Cara Menghindari Cacat Las): umsu press.

Sunaryo, H. (2008). Teknik Pengelasan Kapal. Jakarta: Direktorat Pembinaan Sekolah Menengah Kejuruan.

Ubihatun, R., Aliyya, A. I., Wira, F., Ardhelia, V. I., & Radianto, D. O. (2024). Tantangan dan prospek pendidikan vokasi di era digital: Tinjauan literatur. Abstrak: Jurnal Kajian Ilmu seni, Media dan Desain, 1(3), 01-11.

Yang, L., Fan, J., Huo, B., & Liu, Y. (2021). Inspection of welding defect based on multi-feature fusion and a convolutional network. Journal of Nondestructive Evaluation, 40(4), 90.

Yunianto, B., & Wicaksana, P. (2023). Analisis cacat hasil pengelasan pada pipa ASTM A106 Grade B menggunakan magnetic particle test dan liquid penetrant test di Workshop Las dan Inspeksi PPSDM Migas Cepu. ROTASI, 25(2), 54-60.

Additional Files

Published

2026-08-31

How to Cite

[1]
“Welding Defect Analysis in Low Carbon Steel SMAW Joints Using Visual Inspection and Liquid Penetrant Test as a Basis for Welding Quality Control”, Vomek, vol. 8, no. 3, pp. 179–192, Aug. 2026, doi: 10.24036/znkhtk87.