Quality Control Analysis Using the Seven Tools and Kaizen Methods to Minimize Terminal Defects in the Crimping Process

Authors

  • Arba Al-Bar Universitas Dian Nuswantoro
  • Rudi Tjahyono Universitas Dian Nuswantoro

DOI:

https://doi.org/10.32734/jsti.v28i1.23738

Keywords:

Quality, Seven Tools, Kaizen, Defects, Terminals

Abstract

Product quality control plays a crucial role in maintaining competitiveness in manufacturing industries, particularly in high-volume production processes where minor defects can significantly affect product functionality. This study analyzes quality issues in the crimping process of wiring harness terminals at PT XYZ, where 1,170,016 terminals were produced over an eight-month period, resulting in 1,755 defective units (0.15%). The Seven Tools method including check sheets, histograms, scatter diagrams, control charts, pareto diagrams, fishbone diagrams, and stratification was employed to identify defect types and root causes. The analysis revealed that “too short” defects were the most dominant, accounting for 69.17% of total defects. The p-chart control chart indicated that the defect proportion fluctuated beyond control limits in several periods, signaling process instability. Furthermore, root cause analysis identified five main contributing factors: human, material, method, machine, and environment. Based on these findings, improvement proposals were formulated using the Kaizen approach through the Five-Step Plan and Five-M Checklist, focusing on standardization, training, preventive maintenance, and workplace organization. The proposed improvements are expected to enhance process stability, reduce defect occurrence, and support continuous quality improvement in the crimping process.

Downloads

Download data is not yet available.

References

[1] D. H. Stie and E. Bandung, “Pengendalian Kualitas Dengan Menggunakan Metode Seven Tools Pada PT X,” 2020.

[2] I. Leksic, N. Stefanic, and I. Veza, “The impact of using different lean manufacturing tools on waste reduction,” Advances in Production Engineering And Management, vol. 15, no. 1, pp. 81–92, Mar. 2020, doi: 10.14743/APEM2020.1.351.

[3] F. Rizki Hermawan, E. Safariyani, J. H. Jl Ronggo Waluyo, T. Timur, and J. Barat, “Pengendalian Kualitas dalam Perencanaan Produksi Menggunakan Alat Bantu Seven Tools di Perusahaan Konstruksi,” 2024.

[4] I. Nursyamsi and A. Momon, “Analisa Pengendalian Kualitas Menggunakan Metode Seven Tools untuk Meminimalkan Return Konsumen di PT. XYZ,” Serambi Engineering, vol. VII, no. 1, 2022.

[5] L. Permono, S. T. Salmia, R. Septiari, Program, and S. T. Industri, “PENERAPAN METODE SEVEN TOOLS DAN NEW SEVEN TOOLS UNTUK PENGENDALIAN KUALITAS PRODUK (STUDI KASUS PABRIK GULA KEBON AGUNG MALANG),” Jurnal Mahasiswa Teknik Industri), vol. 5, no. 1, 2022.

[6] W. Alna Marlina, D. Wawan Arasid, J. Manajemen, F. Ekonomi dan Bisnis, and I. Artikel, “Analisis Pengendalian Kualitas Dengan Menggunakan Metode Seven Tools Di Usaha Gula Aren Saka Halaban Sumatera Barat Quality Control Analysis Using The Seven Tools Method In Saka Aren Sugar Business Halaban West Sumatera,” Integrasi Jurnal Ilmiah Teknik Industri, vol. 09, no. 01, 2024, doi: 10.32502/js.v9i1.

[7] I. Nugraha Gusniar and D. Nafis Ramadhan, “Pengendalian Kualitas Menggunakan Seven Tools dan Kaizen pada Part PLG di PT Naratama Sayagai Indonesia,” Serambi Engineering, vol. VII, no. 4, 2022.

[8] N. A. Pratama, M. Zulfian Dito, O. O. Kurniawan, and A. Z. Al-Faritsy, “Analisis Pengendalian Kualitas Dengan Metode Seven Tools Dan Kaizen Dalam Upaya Mengurangi Tingkat Kecacatan Produk,” Jurnal Teknologi dan Manajemen Industri Terapan (JTMIT), vol. 2, no. 2, pp. 53–62, 2023.

[9] B. Harma, Farid, Susriyati, and E. P. Miliandini, “Analisis Kualitas CPO Menggunakan Seven Tools dan Kaizen,” J. Teknol., pp. 13–20, Jun. 2022, doi: 10.35134/jitekin.v12i1.63.

[10] B. Neyestani, “Munich Personal RePEc Archive Seven Basic Tools of Quality Control: The Appropriate Techniques for Solving Quality Problems in the Organizations Seven Basic Tools of Quality Control: The Appropriate Techniques for Solving Quality Problems in the Organizations,” 2017, doi: 10.5281/zenodo.400832.

[11] A. Mitra, “Fundamentals of Quality Control and Improvement FOURTH EDITION,” 2016.

[12] E. Grigoryan and I. Golubkova, “Seven Tools for Quality Management and Control: Theory and Practice,” 2020.

[13] A. Realyvásquez-Vargas, K. C. Arredondo-Soto, T. Carrillo-Gutiérrez, and G. Ravelo, “Applying the Plan-Do-Check-Act (PDCA) cycle to reduce the defects in the manufacturing industry. A case study,” Applied Sciences (Switzerland), vol. 8, no. 11, Nov. 2018, doi: 10.3390/app8112181.

[14] O. Purnamayudhia and A. J. Suwondo, “PENGENDALIAN KUALITAS PRODUK FURNITURE TAMAN DENGAN METODE SEVEN TOOLS,” 2022.

[15] A. Ansyori Masruri, “PENYEBAB KECACATAN PADA CRUDE PALM OIL (CPO) DENGAN MENGGUNAKAN SEVEN TOOLS,” 2018.

[16] J. Hasil Penelitian dan Karya Ilmiah and S. Salim Dahda, “Pengendalian Kualitas Pengelasan Pada Konstruksi Mechanical Piping Dengan Metode Seven Tools,” 2023.

[17] M. Rofieq and R. Septiari, “PENERAPAN SEVEN TOOLS DALAM PENGENDALIAN KUALITAS BOTOL PLASTIK KEMASAN 60 ML,” 2021.

[18] T. Melinda and E. Ginting, “IDENTIFIKASI KECACATAN COIL BASAH DAN UPAYA PERBAIKAN DENGAN METODE SEVEN TOOLS DAN FAULURE MODE AND EFFECT ANALYSIS (FMEA) DI PT. XYZ MEDAN,” Jurnal Sistem Teknik Industri, vol. 18, no. 2, 2016.

[19] S. M. Wirawati and N. Arthawati, “ANALISA KUALITAS PRODUK BAJA BESI BETON MENGGUNAKAN METODE BASIC SEVEN TOOLS DAN TAGUCHI DI PT. ABC,” 2021.

[20] H. Darmawan, S. Hasibuan, and H. Hardi Purba, “Application of Kaizen Concept with 8 Steps PDCA to Reduce in Line Defect at Pasting Process: A Case Study in Automotive Battery,” International Journal of Advances in Scientific Research and Engineering, vol. 4, no. 8, pp. 97–107, 2018, doi: 10.31695/ijasre.2018.32800.

[21] P. M. Patel and V. A. Deshpande, “Application Of Plan-Do-Check-Act Cycle For Quality And Productivity Improvement-A Review,” 2017.

Downloads

Published

2026-02-23

How to Cite

Al-Bar, A., & Tjahyono, R. (2026). Quality Control Analysis Using the Seven Tools and Kaizen Methods to Minimize Terminal Defects in the Crimping Process. Jurnal Sistem Teknik Industri, 28(1), 57–68. https://doi.org/10.32734/jsti.v28i1.23738

Similar Articles

<< < > >> 

You may also start an advanced similarity search for this article.